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GBH

Prof. Dennis Whyte joins Hakeem Oluseyi, host of GBH’s “Particles of Thought,” to discuss cofounding MIT spinoff Commonwealth Fusion Systems from a class assignment that blossomed into actionable research. The students “were not saddled with conventional wisdom” about superconducting technology, says Whyte. In the class, “we were throwing all kinds of crazy ideas at the fridge on this and some of them stuck,” says Whyte. “I’ve had the privilege to see my students succeed. We [professors] have a job where we get an amazing privilege where we get to discover.”  

GBH

Prof. Dennis Whyte, co-founder of MIT spinoff Commonwealth Fusion Systems, joins GBH’s Hakeem Oluseyi, host of “Particles of Thought,” to discuss the future of fusion technology, which he describes as “the engine of the universe.” The energy power density of fusion “is about ten million times higher than gasoline,” says Whyte. “The cost and the accessibility to it [fusion] is not driven by access to fuel, but to the technology and the manufacturing capability of building the objects that would actually deliver fusion. We need a new discipline to tell us about what that is going to cost as a practical energy source—which we are starting to do now.”  

The Boston Globe

MIT startup Fourth Power, founded by Prof. Asegun Henry, has developed a solar cell that generates its energy through built-in solar panels powered by hot graphite, writes Hiawatha Bray for The Boston Globe. “The Fourth Power system can be heated up using renewable energy, like wind or solar power, at times when these resources are cranking out surplus power,” writes Bray. “[T]he Fourth Power technology could become a preferred method of providing extra power to electrical grids during periods of peak demand.” 

Associated Press

During Climate Week NYC, Evelyn Wang, MIT’s Vice President for Energy and Climate, emphasized the importance of utilizing AI to help tackle climate change, write Seth Borenstein and Jennifer McDermott for The Associated Press. Data centers adding to climate and water problems ‘is not forever,’ according to Wang, who told The Associated Press that data centers are about five years away from being water neutral and about a decade away from no longer adding to planet-warming emissions. 

GBH

Prof. John Fernández joins Edgar B. Herwick, host of GBH’s “The Curiosity Desk,” to discuss Singapore’s success creating sustainable infrastructure, from having two thirds of buildings in Singapore certified green to constructing covered walkways for public spaces, and enhancing biodiversity in the city. “They have been, for many decades, very intent on being a resource efficient country,” says Fernández. “These incremental improvements go a long way towards reducing energy consumption and emissions.”  

Financial Times

The Financial Times’ Anjana Ahuja spotlights research led by Prof. Dennis Whyte on the economics of fusion energy. “Economic Q, the metric devised by Whyte and others and which must exceed one to represent net economic gain, compares the capital gained over a fusion energy plant’s lifetime to that expended,” writes Ahuja. “Factors reflect the extreme engineering involved and include construction costs, component durability and the efficiency of converting fusion power into a commodity.” 

TechCrunch

Assil Halimi PhD ‘25 speaks to TechCrunch’s Tim De Chant about his company Apollo Atomics, which is shrinking the steam generator component of a reactor to streamline nuclear power. “We don’t want to be incremental in nuclear and just improve a small thing,” says Halimi. “Our target is to beat natural gas.” 

World Nuclear News

MIT researchers have developed a framework to determine what is needed to make fusion energy commercially viable, writes World Nuclear News (WNN). “The parameters in the framework describe engineering features of the fusion power plant such as power density, the efficiency of converting fusion power into an economic product, and the durability of components used in the energy conversion, in addition to costing and market parameters that assess the expenses and returns from invested capital,” explains WNN.  

Interesting Engineering

Prof. Dennis Whyte and Prof. Andrew Lo have built a framework to mitigate the economic challenges of fusion power, writes Interesting Engineering’s Ameya Paleja. “While there are multiple approaches to building a nuclear fusion facility, Whyte and colleagues believe that at the end of the day, the facility should be in a position to generate more money that has gone in to building and operating it, otherwise it won’t last for long,” writes Paleja. 

Boston Business Journal

MIT spinoff Found Industries’ new Cambridge headquarters and metals processing development center is highlighted by Boston Business Journal's Lucia Maffei. “We are developing electrochemical processes to recover gallium and, in time, indium, and germanium, and antimony and other critical metals directly from existing industrial streams,” says Peter Godart PhD ‘21, Found Industries CEO.  

Fast Company

Bob Mumgaard PhD ‘15, co-founder and CEO of MIT spinout Commonwealth Fusion Systems, speaks to Fast Company’s Adele Peters about building his company’s first power plant, set to come online in the 2030s in Virginia. “To make fusion into more than just the first plants, it has to be an industry and there’s multiple parts of that,” says Mumgaard. 

Electronic Design

MIT researchers have developed a low temperature process to extract battery-grade lithium from spodumene, the most common type of mineral containing lithium, using a reusable liquid reagent, writes Electronic Design’s Lee Goldberg. “The new process uses a liquid reagent to dissolve the rock into the useful forms of its constituent parts — not just battery-ready lithium salts, but also smelter-grade alumina and cement-ready silica,” writes Goldberg. “After the minerals are extracted, the solvent and reagent can be recovered and used again so that waste levels approach zero.”  

Tech Briefs

Graduate student Peter Zhi Xuan Li speaks to Tech Briefs’ Andrew Corselli about his team’s work developing a new chip that allows small, autonomous robots and other battery-limited devices to construct detailed 3D maps of their environments using a fraction of the power required by other systems. “Today, a robot uses separate, incompatible internal representations for different jobs: one for mapping, another for tracking its own motion, another for rendering what it sees, and every conversion adds memory footprint and energy,” says Li. “Our goal is a single shared representation.” 

Marketplace

Prof. Catherine Wolfram speaks to Marketplace’s Kristin Schwab about the rise in gas prices during the conflict with Iran.  

Fast Company

Fast Company’s Adele Peters spotlights “Project Obsidian,” a new geothermal power plant developed by MIT spinout Quaise Energy. The findings of former Senior Research Engineer Paul Woskov helped Quaise develop their tech. “Paul’s epiphany was realizing that if we can use the same energy to heat plasmas to millions of degrees Celsius to get fusion, why not use that for heating and drilling through rock at a much more modest temperature?” says Matthew Houde, Quaise co-founder.