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Climate News at MIT

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WasteInternational AgreementsBatteries, Storage & TransmissionClear All
PostOctober 2, 2025

A simple formula could guide the design of faster-charging, longer-lasting ...

MIT News
An artist's depiction of lithium ions moving from an electrolyte solution to a cobalt-oxide electrode, with color-coded spheres representing the different chemical constituents.
PostOctober 1, 2025

Concrete “battery” developed at MIT now packs 10 times the power

MIT News
An electron-conducting carbon concrete (ec³)-based arch structure integrates supercapacitor electrodes for dual functionality. The prototype demonstrates both structural load bearing and the ability to power an LED, with the light’s intensity varying under applied load, highlighting the potential for real-time structural health monitoring via the supercapacitor.
PostSeptember 30, 2025

In the Vortex of Great Power Competition: Climate, Trade, and Geostrategic ...

MIT Center for Energy and Environmental Policy Research
illustration of cargo containers from the US EU and China
PostSeptember 29, 2025

A beacon of light

Department of Urban Studies and Planning MIT
Marcelo Coelho (left) and the Geolectric Lantern
PostSeptember 22, 2025

Power-outage exercises strengthen the resilience of US bases

MIT Lincoln Laboratory
Lincoln Laboratory researchers Jean Sack (left) and Christopher Lashway have conducted dozens of Energy Resilience Readiness Exercises at military installations across the nation and abroad.
PostSeptember 16, 2025

Decoding the sounds of battery formation and degradation

MIT Department of Chemical Engineering
The MIT researchers used a customized experimental platform to simultaneously record acoustic emissions and perform electrochemical tests on lithium ion batteries.
PostSeptember 4, 2025

A greener way to 3D print stronger stuff

MIT News
A new software and hardware toolkit called SustainaPrint can help users strategically combine strong and weak filaments to achieve the best of both worlds. Instead of printing an entire object with high-performance plastic, the system analyzes a model, predicts where the object is most likely to experience stress, and reinforces those zones with stronger material.
PostAugust 28, 2025

New self-assembling material could be the key to recyclable EV batteries

MIT News
A depiction of batteries made with MIT researchers’ new electrolyte material, which is made from a class of molecules that self-assemble in water, named aramid amphiphiles (AAs), whose chemical structures and stability mimic Kevlar.
PostAugust 27, 2025

Fikile Brushett named director of MIT chemical engineering practice school

MIT Department of Chemical Engineering
Professor Fikile Brushett
PostAugust 5, 2025

AI helps chemists develop tougher plastics

MIT News
A colorful up-close rendering of a polymer material.

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