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MIT.nano has been a member of Linktree for 4 years and joined in November 2021. The social media accounts linked to from MIT.nano are: • Instagram • YouTube • LinkedIn • Email • X Besides social media accounts, mitnano has populated their site with: • MIT engineers find a precise way to grow artificial blood vessels | MIT News | Massachusetts Institute of Technology • Diana Grass: Listening to the body’s language | MIT News | Massachusetts Institute of Technology • Discovery could lead to brighter, more energy-efficient digital displays | MIT News | Massachusetts Institute of Technology • MIT-designed educational factory embraces modern manufacturing | MIT News | Massachusetts Institute of Technology • MIT engineers whip up a more breathable hydrogel | MIT News | Massachusetts Institute of Technology • New computer vision method helps speed up screening of electronic materials • Discovery helps explain why solid-state batteries often fail | MIT News | Massachusetts Institute of Technology • Students from across the Northeast step inside MIT.nano’s cleanroom | MIT News | Massachusetts Institute of Technology • Graphene can hold multiple states of superconductivity, a new study finds | MIT News | Massachusetts Institute of Technology • New chip could help tiny robots traverse complex environments | MIT News | Massachusetts Institute of Technology • Flexible cryogenic cables solve a challenge in quantum system development | MIT News | Massachusetts Institute of Technology • To study how chips really work, MIT researchers built their own operating system | MIT News | Massachusetts Institute of Technology • Pablo Jarillo-Herrero wins Kavli Prize in Nanoscience | MIT News | Massachusetts Institute of Technology • Improving the performance of high-power electronics | MIT News | Massachusetts Institute of Technology • A new sensor could enable earlier detection of bladder cancer | MIT News | Massachusetts Institute of Technology • MIT researchers develop a low-cost technique to get lithium out of rocks | MIT News | Massachusetts Institute of Technology • At a spirited Commencement ceremony, the Class of 2026 is urged to “run toward the hardest problems” | MIT News | Massachusetts Institute of Technology • Workshop builds student skills and strengthens international ties with Tec de Monterrey - Global MIT • Quantum computing is reaching its make-or-break moment | Scientific American • Solving hard problems in soft electronics | MIT News | Massachusetts Institute of Technology • Improving the reliability of circuits for quantum computers | MIT News | Massachusetts Institute of Technology • Powering 160,000 hours of discovery at MIT.nano | MIT News | Massachusetts Institute of Technology • Photonics advance could enable compact, high-performance lidar sensors | MIT News | Massachusetts Institute of Technology • Dennis Grimard Distinguished User Award | MIT.nano • The hidden structure behind a widely used class of materials | MIT News | Massachusetts Institute of Technology • A materials scientist’s playground | MIT News | Massachusetts Institute of Technology • With a swipe of a magnet, microscopic “magno-bots” perform complex maneuvers | MIT News | Massachusetts Institute of Technology • New chip can protect wireless biomedical devices from quantum attacks | MIT News | Massachusetts Institute of Technology • The Mildred S. Dresselhaus Lecture Series | MIT.nano • MIT study reveals a new role for cell membranes | MIT News | Massachusetts Institute of Technology • Multitasking quantum sensors can measure several properties at once | MIT News | Massachusetts Institute of Technology • Carbon removal project supports Maine’s blue economy, broader marine health | MIT News | Massachusetts Institute of Technology • Sixteen new START.nano companies are developing hard-tech solutions with the support of MIT.nano | MIT News | Massachusetts Institute of Technology • Electrons in moiré crystals explore higher-dimensional quantum worlds | MIT News | Massachusetts Institute of Technology • Lincoln Laboratory laser communications terminal launches on historic Artemis II moon mission | MIT News | Massachusetts Institute of Technology • Implantable islet cells could control diabetes without insulin injections | MIT News | Massachusetts Institute of Technology • Why solid-state batteries keep short-circuiting | MIT News | Massachusetts Institute of Technology • Active Surfaces aims to install peel-and-stick solar panels everywhere | MIT News | Massachusetts Institute of Technology • From Idaho to MIT, on a quest to cut methane emissions | MIT News | Massachusetts Institute of Technology • New sensor sniffs out pneumonia on a patient’s breath | MIT News | Massachusetts Institute of Technology • Ocean bacteria team up to break down biodegradable plastic | MIT News | Massachusetts Institute of Technology • Finding a nanoscale solution to safer spaceflight | MIT News | Massachusetts Institute of Technology • New photonic device efficiently beams light into free space | MIT News | Massachusetts Institute of Technology • Nitrous oxide, a product of fertilizer use, may harm some soil bacteria | MIT News | Massachusetts Institute of Technology • Injectable “satellite livers” could offer an alternative to liver transplantation | MIT News | Massachusetts Institute of Technology • Tackling industry’s burdensome bubble problem | MIT News | Massachusetts Institute of Technology • Chip-processing method could assist cryptography schemes to keep data secure | MIT News | Massachusetts Institute of Technology • 3D-printing platform rapidly produces complex electric machines | MIT News | Massachusetts Institute of Technology • A quick stretch switches this polymer’s capacity to transport heat | MIT News | Massachusetts Institute of Technology • New vaccine platform promotes rare protective B cells | MIT News | Massachusetts Institute of Technology • “This is science!” – MIT president talks about the importance of America’s research enterprise on GBH’s Boston Public Radio | MIT News | Massachusetts Institute of Technology • 3D-printed metamaterials that stretch and fail by design | MIT News | Massachusetts Institute of Technology • Terahertz microscope reveals the motion of superconducting electrons | MIT News | Massachusetts Institute of Technology • Pablo Jarillo-Herrero wins BBVA Foundation Frontiers of Knowledge Award | MIT News | Massachusetts Institute of Technology • A portable ultrasound sensor may enable earlier detection of breast cancer | MIT News | Massachusetts Institute of Technology • MIT engineers design structures that compute with heat | MIT News | Massachusetts Institute of Technology • Electrifying boilers to decarbonize industry | MIT News | Massachusetts Institute of Technology • Generative AI tool helps 3D print personal items that sustain daily use • Efficient cooling method could enable chip-based trapped-ion quantum computers | MIT News | Massachusetts Institute of Technology • Chemists determine the structure of the fuzzy coat that surrounds Tau proteins | MIT News | Massachusetts Institute of Technology • Pills that communicate from the stomach could improve medication adherence | MIT News | Massachusetts Institute of Technology • AI-generated sensors open new paths for early cancer detection | MIT News | Massachusetts Institute of Technology • New study suggests a way to rejuvenate the immune system | MIT News | Massachusetts Institute of Technology • New materials could boost the energy efficiency of microelectronics | MIT News | Massachusetts Institute of Technology • Jennifer Lewis ScD ’91: “Can we make tissues that are made from you, for you?” | MIT News | Massachusetts Institute of Technology • Pompeii offers insights into ancient Roman building technology | MIT News | Massachusetts Institute of Technology • MIT engineers design an aerial microrobot that can fly as fast as a bumblebee | MIT News | Massachusetts Institute of Technology • Artificial tendons give muscle-powered robots a boost | MIT News | Massachusetts Institute of Technology • An improved way to detach cells from culture surfaces | MIT News | Massachusetts Institute of Technology • Ultrasonic device dramatically speeds harvesting of water from the air | MIT News | Massachusetts Institute of Technology • A new patch could help to heal the heart | MIT News | Massachusetts Institute of Technology • From nanoscale to global scale: Advancing MIT’s special initiatives in manufacturing, health, and climate | MIT News | Massachusetts Institute of Technology • New lightweight polymer film can prevent corrosion | MIT News | Massachusetts Institute of Technology • MIT physicists observe key evidence of unconventional superconductivity in magic-angle graphene | MIT News | Massachusetts Institute of Technology • New therapeutic brain implants could defy the need for surgery | MIT News | Massachusetts Institute of Technology • New nanoparticles stimulate the immune system to attack ovarian tumors | MIT News | Massachusetts Institute of Technology • Designing better, longer-lasting medicines | MIT News | Massachusetts Institute of Technology • Dresselhaus Lecture: Printing soft and living matter in three dimensions—Nov. 3 | MIT.nano • A “seating chart” for atoms helps locate their positions in materials | MIT News | Massachusetts Institute of Technology • Solar energy startup Active Surfaces wins inaugural PITCH.nano competition | MIT News | Massachusetts Institute of Technology • Why some quantum materials stall while others scale • MIT engineers solve the sticky-cell problem in bioreactors and other industries | MIT News | Massachusetts Institute of Technology • Uncovering new physics in metals manufacturing | MIT News | Massachusetts Institute of Technology • Nano Day 2025: nanoStories—a brief look into the ways the world is put together | MIT.nano • Printable aluminum alloy sets strength records, may enable lighter aircraft parts | MIT News | Massachusetts Institute of Technology • Palladium filters could enable cheaper, more efficient generation of hydrogen fuel | MIT News | Massachusetts Institute of Technology • AI system learns from many types of scientific information and runs experiments to discover new materials | MIT News | Massachusetts Institute of Technology • MIT engineers develop a magnetic transistor for more energy-efficient electronics | MIT News | Massachusetts Institute of Technology • Decoding the sounds of battery formation and degradation | MIT News | Massachusetts Institute of Technology • Physicists devise an idea for lasers that shoot beams of neutrinos | MIT News | Massachusetts Institute of Technology • “Bottlebrush” particles deliver big chemotherapy payloads directly to cancer cells | MIT News | Massachusetts Institute of Technology • Locally produced proteins help mitochondria function | MIT News | Massachusetts Institute of Technology • New self-assembling material could be the key to recyclable EV batteries | MIT News | Massachusetts Institute of Technology • New method could monitor corrosion and cracking in a nuclear reactor | MIT News | Massachusetts Institute of Technology • New laser “comb” can enable rapid identification of chemicals with extreme precision | MIT News | Massachusetts Institute of Technology • Study sheds light on graphite’s lifespan in nuclear reactors | MIT News | Massachusetts Institute of Technology • How AI could speed the development of RNA vaccines and other RNA therapies • Would you like that coffee with iron? • AI helps chemists develop tougher plastics | MIT News | Massachusetts Institute of Technology • New transmitter could make wireless devices more energy-efficient • MIT’s Ultra-Small Optical Devices Rewrite the Rules of Light Manipulation | MIT Materials Research Laboratory • New system dramatically speeds the search for polymer materials • Adhesive inspired by hitchhiking sucker fish sticks to soft surfaces underwater • Scientists discover compounds that help cells fight a wide range of viruses • Implantable device could save diabetes patients from dangerously low blood sugar • Study shows how a common fertilizer ingredient benefits plants • In Situ X-ray Microscopy Unraveling the Onset of Salt Creeping at a Single-Crystal Level • MIT engineers uncover a surprising reason why tissues are flexible or rigid • Closing in on superconducting semiconductors • Photonic processor could streamline 6G wireless signal processing • New 3D chips could make electronics faster and more energy-efficient • Have a damaged painting? Restore it in just hours with an AI-generated “mask” • Physicists observe a new form of magnetism for the first time • At MIT, Lindsay Caplan reflects on artistic crossroads where humans and machines meet • New fuel cell could enable electric aviation • MIT physicists discover a new type of superconductor that’s also a magnet • A new technology for extending the shelf life of produce • How to solve a bottleneck for CO2 capture and conversion • Particles carrying multiple vaccine doses could reduce the need for follow-up shots • MIT engineering students crack egg dilemma, finding sideways is stronger • MIT physicists snap the first images of “free-range” atoms • SLB joins the MIT.nano Consortium • MIT engineers advance toward a fault-tolerant quantum computer • New chip tests cooling solutions for stacked microelectronics • New electronic “skin” could enable lightweight night-vision glasses • MIT engineers print synthetic “metamaterials” that are both strong and stretchy • Breakerspace image contest showcases creativity, perseverance • Engineered bacteria emit signals that can be spotted from a distance • Hopping gives this tiny robot a leg up • Tabletop factory-in-a-box makes hands-on manufacturing education more accessible • Technology developed by MIT engineers makes pesticides stick to plant leaves • We Made This Podcast Inside MIT's Massive Nanotech Clean Room • Engineers develop a better way to deliver long-lasting drugs • Device enables direct communication among multiple quantum processors • Artificial muscle flexes in multiple directions, offering a path to soft, wiggly robots • SMART researchers pioneer nanosensor for real-time iron detection in plants • Seeing more in expansion microscopy • MIT physicists find unexpected crystals of electrons in an ultrathin material • MIT engineers prepare to send three payloads to the moon • Chip-based system for terahertz waves could enable more efficient, sensitive electronics • MIT engineers develop a fully 3D-printed electrospray engine • With generative AI, MIT chemists quickly calculate 3D genomic structures • For clean ammonia, MIT engineers propose going underground • New START.nano cohort is developing solutions in health, data storage, power, and sustainable energy • Physicists discover — and explain — unexpected magnetism in an atomically thin material • New general law governs fracture energy of networks across materials and length scales • Fast control methods enable record-setting fidelity in superconducting qubit • This fast and agile robotic insect could someday aid in mechanical pollination • Physicists measure quantum geometry for the first time • New filter captures and recycles aluminum from manufacturing waste • At MIT, Clare Grey stresses battery development to electrify the planet • Tiny, wireless antennas use light to monitor cellular communication • MIT engineers grow “high-rise” 3D chips • Noninvasive imaging method can penetrate deeper into living tissue • A new biodegradable material to replace certain microplastics • A new catalyst can turn methane into something useful • Photonic processor could enable ultrafast AI computations with extreme energy efficiency • Tunable ultrasound propagation in microscale metamaterials • MIT engineers make converting CO2 into useful products more practical • “Wearable” devices for cells • Dresselhaus Lecture: Understanding battery function—new metrologies, new chemistries, and new insights—Nov. 18 | MIT.nano • Nanoscale transistors could enable more efficient electronics • Implantable microparticles can deliver two cancer therapies at once • Tiny magnetic discs offer remote brain stimulation without transgenes • MIT team takes a major step toward fully 3D-printed active electronics • A new method makes high-resolution imaging more accessible • Bubble findings could unlock better electrode and electrolyzer designs • Nano Day 2024: Travel to the Nano Age | MIT.nano • MIT engineers create a chip-based tractor beam for biological particles • New security protocol shields data from attackers during cloud-based computation • AI model can reveal the structures of crystalline materials • No detail too small • New filtration material could remove long-lasting chemicals from water • Tools for making imagination blossom at MIT.nano • Nanostructures enable on-chip lightwave-electronic frequency mixer • Study of disordered rock salts leads to battery breakthrough • MIT engineers design tiny batteries for powering cell-sized robots • An implantable sensor could reverse opioid overdoses • A new approach to fine-tuning quantum materials • Physicists report new insights into exotic particles key to magnetism • MIT chemists synthesize plant-derived molecules that hold potential as pharmaceuticals • With sustainable cement, startup aims to eliminate gigatons of CO₂ • Testing spooky action at a distance • New substrate material for flexible electronics could help combat e-waste • Helping Olympic athletes optimize their performance, one stride at a time • Polina Anikeeva named head of the Department of Materials Science and Engineering • MIT spinout Arnasi begins applying LiquiGlide no-stick technology to help patients • A recipe for zero-emissions fuel: Soda cans, seawater, and caffeine • Proton-conducting materials could enable new green energy technologies • Machine learning unlocks secrets to advanced alloys • AI method radically speeds predictions of materials’ thermal properties • Detachable cardiac pacing lead may improve safety for cardiac patients • A new way to miniaturize cell production for cancer treatment • “I wanted to work on something that didn’t exist” • Scientists observe record-setting electron mobility in a new crystal film • Wireless receiver blocks interference for better mobile device performance • Pioneering the future of materials extraction • Implantable microphone could lead to fully internal cochlear implants • MIT researchers identify routes to stronger titanium alloys • Scientists use computational modeling to guide a difficult chemical synthesis • Scientists preserve DNA in an amber-like polymer • The Next Quantum Revolution • U.S. startup plans perovskite solar factory • Technologies enable 3D imaging of whole human brain hemispheres at subcellular resolution • A smarter way to streamline drug discovery • Microscope system sharpens scientists’ view of neural circuit connections • Physicists create five-lane superhighway for electrons • Protein study could help researchers develop new antibiotics • Researchers demonstrate the first chip-based 3D printer • Ultrasound offers a new way to perform deep brain stimulation • Microscopic defects in ice influence how massive glaciers flow, study shows • Turning up the heat on next-generation semiconductors • Study: Under extreme impacts, metals get stronger when heated • Modular, scalable hardware architecture for a quantum computer • Using MRI, engineers have found a way to detect light deep in the brain • Using art and science to depict the MIT family from 1861 to the present • Adhesive coatings can prevent scarring around medical implants • MIT scientists learn how to control muscles with light • Making steel with electricity • An expansive approach to making new compounds • Researchers develop a detector for continuously monitoring toxic gases • Scientists develop an affordable sensor for lead contamination • Two MIT teams selected for NSF sustainable materials grants • Physicists create five-lane superhighway for electrons | MIT Materials Research Laboratory • Researchers detect a new molecule in space • This sound-suppressing silk can create quiet spaces • 3 Questions: A shared vocabulary for how infectious diseases spread • Seizing solar’s bright future • Fostering research, careers, and community in materials science • Physicists arrange atoms in extremely close proximity • A closed-loop drug-delivery system could improve chemotherapy • How light can vaporize water without the need for heat • START.nano | MIT.nano • MIT scientists tune the entanglement structure in an array of qubits • This tiny chip can safeguard user data while enabling efficient computing on a smartphone • Tackling cancer at the nanoscale • Plant sensors could act as an early warning system for farmers • “Nanostitches” enable lighter and tougher composite materials • A new way to detect radiation involving cheap ceramics • When an antibiotic fails: MIT scientists are using AI to target “sleeper” bacteria • “Life is short, so aim high” • Unlocking new science with devices that control electric power • A new computational technique could make it easier to engineer useful proteins • Students explore career opportunities in semiconductors • Unlocking mRNA’s cancer-fighting potential • With a new experimental technique, MIT engineers probe the mechanisms of landslides and earthquakes • Exploring the cellular neighborhood • Creative collisions: Crossing the art-science divide • Scientists develop a rapid gene-editing screen to find effects of cancer mutations • A new sensor detects harmful “forever chemicals” in drinking water • Reducing pesticide use while increasing effectiveness • MIT scientists use a new type of nanoparticle to make vaccines more powerful • Researchers harness 2D magnetic materials for energy-efficient computing • MIT engineers 3D print the electromagnets at the heart of many electronics • Brain surgery training from an avatar • Study unlocks nanoscale secrets for designing next-generation solar cells • Hitchhiking cancer vaccine makes progress in the clinic • Spirio piano offers MIT community new possibilities for studying and experimenting with music • MIT physicists capture the first sounds of heat “sloshing” in a superfluid • Researchers discover new channels to excite magnetic waves with terahertz light • Scientists develop a low-cost device to make cell therapy safer • Imaging method reveals new cells and structures in human brain tissue • Middle-school students meet a beam of electrons, and excitement results • MIT, Applied Materials, and the Northeast Microelectronics Coalition Hub to bring 200mm advanced research capabilities to MIT.nano • New MIT.nano equipment to accelerate innovation in “tough tech” sectors • Capsid of HIV-1 behaves like cell’s cargo receptor to enter the nucleus • Self-powered sensor automatically harvests magnetic energy • Navigate your way to a career in semiconductors: A network & recruiting event—Feb. 6 | MIT.nano • Study reveals a reaction at the heart of many renewable energy technologies • Shell joins MIT.nano Consortium • Stripes in a flowing liquid crystal suggest a route to “chiral” fluids • Researchers 3D print components for a portable mass spectrometer • Nanoparticle-delivered RNA reduces neuroinflammation in lab tests • Closing the design-to-manufacturing gap for optical devices • Angela Belcher delivers 2023 Dresselhaus Lecture on evolving organisms for new nanomaterials • Researchers safely integrate fragile 2D materials into devices • 2023 Nobel Prize lectures in chemistry | Moungi Bawendi, Louis Brus and Aleksey Yekimov • A new way to deliver drugs more efficiently • Team engineers nanoparticles using ion irradiation to advance clean energy and fuel conversion • Celebrating five years of MIT.nano • Physicists trap electrons in a 3D crystal for the first time • New laser setup probes metamaterial structures with ultrafast pulses • Dresselhaus Lecture: Evolving organisms to grow new nanomaterials for energy, the environment, and medicine—Nov. 20 • Engineers develop an efficient process to make fuel from carbon dioxide • In a surprising finding, light can make water evaporate without heat • Soft optical fibers block pain while moving and stretching with the body • Wobbly gel mat trains muscle cells to work together • From a five-layer graphene sandwich, a rare electronic state emerges • Nano Day 2023 • New qubit circuit enables quantum operations with higher accuracy • An implantable device could enable injection-free control of diabetes • MIT.nano Family Day invites those at home to come to work • Pixel-by-pixel analysis yields insights into lithium-ion batteries • System combines light and electrons to unlock faster, greener computing • Canceling noise to improve quantum devices • Tiny magnetic beads produce an optical signal that could be used to quickly detect pathogens • MIT engineers use kirigami to make ultrastrong, lightweight structures • Simple superconducting device could dramatically cut energy use in computing, other applications • Arrays of quantum rods could enhance TVs or virtual reality devices • Q&A: A high-tech take on Wagner’s “Parsifal” opera • MIT engineers create an energy-storing supercapacitor from ancient materials • New quantum magnet unleashes electronics potential • Generative AI imagines new protein structures • Chemists discover why photosynthetic light-harvesting is so efficient • MIT physicists generate the first snapshots of fermion pairs • Researchers grow precise arrays of nanoLEDs • Superconducting qubit foundry accelerates progress in quantum research • International team reports powerful tool for studying, tuning atomically thin materials • Sensing the world around us • Researchers develop a new source of quantum light • This salty gel could harvest water from desert air • Advancing material innovation to address the polymer waste crisis • New model offers a way to speed up drug discovery • Meet the tight-knit technical staff who help MIT.nano handle any challenge • Team uses 3D printing to strengthen a key material in aerospace, energy-generation applications • First-of-its-kind Indigenous immersive incubator gathers on MIT campus • Engineers design sutures that can deliver drugs or sense inflammation • Putting the STING into cancer immunotherapy • Say hello to Tim the BeaVR • MIT HUMANS project breaks down borders, empowering global voices to reach for the stars • Study reveals new ways for exotic quasiparticles to “relax” • Two-component system could offer a new way to halt internal bleeding • Researchers 3D print a miniature vacuum pump • Nanoparticles provoke immune response against tumors but avoid side effects • Tim The Beaver Photo Demo | Daniel Portela | 8th Wall • Even as temperatures rise, this hydrogel material keeps absorbing moisture • AI system can generate novel proteins that meet structural design targets • In the MIT.nano Immersion Lab, Capturing the Movements of Dancers Has Wide Applications • Moving perovskite advancements from the lab to the manufacturing floor • Scientists track evolution of microbes on the skin’s surface • MIT engineers devise technology to prevent fouling in photobioreactors for CO2 capture • Bacterial injection system delivers proteins in mice and human cells • New nanoparticles can perform gene editing in the lungs • Learning to design with atoms and molecules • Tackling counterfeit seeds with “unclonable” labels • A glimpse inside Intel • Exploring the nanoworld of biogenic gems • Resilient bug-sized robots keep flying even after wing damage • A new chip for decoding data transmissions demonstrates record-breaking energy efficiency • New purification method could make protein drugs cheaper • Solar Catsby | MIT Admissions • A closer look at the nanoscale and beyond • New chip for mobile devices knocks out unwanted signals • Student-led conference charts the future of micro- and nanoscale research, reinforces scientific community • Engineers discover a new way to control atomic nuclei as “qubits” • Engineers invent vertical, full-color microscopic LEDs • New polymers could enable better wearable devices • Scientists boost quantum signals while reducing noise • Physicists observe rare resonance in molecules for the first time • “Spleen-on-a-chip” yields insight into sickle cell disease • Targeting cancer with a multidrug nanoparticle • MIT engineers grow “perfect” atom-thin materials on industrial silicon wafers • Riddle solved: Why was Roman concrete so durable? • Strengthening electron-triggered light emission • New sensor uses MRI to detect light deep in the brain • Pablo Jarillo-Herrero delivers 2022 Dresselhaus Lecture on the magic of moiré quantum matter • Molecules found in mucus could prevent cholera infection • Class opens door to a new world of mechanical engineering. • Breaking the scaling limits of analog computing • Paper-thin solar cell can turn any surface into a power source • Nano Explorations —Van der Waals integration beyond the limits of van der Waals forces • All the possibilities of the cleanroom • The engineer who opened doors • NEWS: How “2D” materials expand • NEWS: Nanosensors target enzymes to monitor and study cancer • 2022 Dresselhaus Lecture: The magic of moiré quantum matter • NEWS: Tiny particles work together to do big things • NEWS: In nanotube science, is boron nitride the new carbon? • NEWS: MIT system “sees” the inner structure of the body during physical rehab • NEWS: Building with nanoparticles, from the bottom up • NEWS: Desktop simulation of MIT.nano die bonder enables virtual tool training • NEWS: New process could enable more efficient plastics recycling • NEWS: Engineers develop a new kind of shape-memory material • NEWS: MIT.nano adds new instruments to create and analyze at the nanoscale • NEWS: New system designs nanomaterials that conduct heat in specific ways • Download Explorers of the Nano Age, our nano coloring book! • NEWS: A factory for FrEDs at MIT • NEWS: MIT engineers build a battery-free, wireless underwater camera • NEWS: Passive cooling system could benefit off-grid locations • NEWS: Cell Rover: Exploring and augmenting the inner world of the cell • NEWS: MechE Associate Prof. Gallant utilizes electrochemical reactions to develop new sustainable technologies • NEWS: Turning carbon dioxide into valuable products • NEWS: Microscopy technique reveals hidden nanostructures in cells and tissues • NEWS: A new concept for low-cost batteries • NEWS: Engineers fabricate a chip-free, wireless electronic “skin” • NEWS: New programmable materials can sense their own movements • NEWS: U.S. Sen. Elizabeth Warren visits MIT to celebrate passage of CHIPS and Science Act • NEWS: Engineers repurpose 19th-century photography technique to make stretchy, color-changing films • NEWS: Scientists capture first-ever view of a hidden quantum phase in a 2D crystal • NEWS: Researchers 3D print sensors for satellites • NEWS: How different cancer cells respond to drug-delivering nanoparticles • NEWS: New hardware offers faster computation for artificial intelligence, with much less energy • NEWS: Silk offers an alternative to some microplastics • NEWS: MIT engineers design surfaces that make water boil more efficiently • NEWS: Physicists discover a “family” of robust, superconducting graphene structures • VIDEO: MIT.nano on Ask This Old House • NEWS: Stronger security for smart devices • NEWS: Quantum sensor can detect electromagnetic signals of any frequency • NEWS: Nanoparticle sensor can distinguish between viral and bacterial pneumonia • NEWS: Robotic lightning bugs take flight • NEWS: Engineers build LEGO-like artificial intelligence chip • NEWS: BUILD.nano: Ultra small-scale engineering with city-scale impact • NEWS: Molecules found in mucus can thwart fungal infection • NEWS: Engineers develop nanoparticles that cross the blood-brain barrier • NEWS: MIT engineers boost signals from fluorescent sensors • NEWS: Researchers unveil a secret of stronger metals • NEWS: Ultrathin fuel cell uses the body’s own sugar to generate electricity • NEWS: Connecting MIT students with women leading in semiconductors • NEWS: Soft assistive robotic wearables get a boost from rapid design tool • NEWS: Researchers develop a paper-thin loudspeaker • NEWS: MIT to name Building 12, home of MIT.nano, in honor of Lisa Su • NEWS: From seawater to drinking water, with the push of a button • NEWS: Providing hands-on photonics education across Massachusetts • MIT Climate Grand Challenges • NEWS: A new heat engine with no moving parts is as efficient as a steam turbine • NEWS: Engineers enlist AI to help scale up advanced solar cell manufacturing • NEWS: Toward batteries that pack twice as much energy per pound • NEWS: A fabric that “hears” your heart's sounds • NEWS: Workshop tackles a critical gap slowing the development of new hardware technologies • NEWS: Physicists find direct evidence of strong electron correlation in a 2D material for the first time • NEWS: Last-minute pivot leads to record-setting Microsystems Annual Research Conference • NEWS: How to clean solar panels without water • NEWS: More sensitive X-ray imaging • NEWS: Toward a stronger defense of personal data • NEWS: Gina Raimondo: “Let’s get back to the business of building microchips in America” • NEWS: New plant-derived composite is tough as bone and hard as aluminum • NEWS: Size matters in particle treatments of traumatic injuries • NEWS: MIT.nano receives grant to acquire focused ion beam scanning electron microscope • NEWS: New lightweight material is stronger than steel • NEWS: Tiny materials lead to a big advance in quantum computing • NEWS: Reasserting U.S. leadership in microelectronics • NEWS: Cleanroom as classroom • NEWS: Physicists detect a hybrid particle held together by uniquely intense “glue” • NEWS: From counting blood cells to motion capture, sensors drive patient-centered research • NEWS: Immune system-stimulating nanoparticle could lead to more powerful vaccines • NEWS: Jelena Vučković delivers 2021 Dresselhaus Lecture on inverse-designed photonics • NEWS: Nanograins make for a seismic shift • NEWS: Engineers report a major advance in creating a new family of semiconductor materials