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Catalytic Combo Effectively Produces Carbon Nanofibers from CO2

Researchers at Columbia University and the US Department of Energy’s (DOE) Brookhaven National Laboratory have created a method for turning carbon dioxide (CO2), a powerful greenhouse gas, into carbon nanofibers—materials with a variety of special qualities and several long-term applications.
Jingguang Chen Sooyeon Hwang Zhenhua Xie Megan Craig Us Department Of Energy Research Scientist

Catalytic combo converts CO2 to solid carbon

<p>Scientists at Brookhaven National Laboratory and Columbia University have developed a way to convert carbon dioxide (CO<sub>2</sub>), a potent greenhouse gas, into carbon nanofibers, materials with a wide range of unique properties and many potential long-term uses. Their strategy uses tandem electrochemical and thermochemical reactions run at relatively low temperatures and ambient pressure and could successfully lock carbon away to offset or even achieve ...
United States Zhenhua Xie Jingguang Chen Sooyeon Hwang Columbia University Us Department Of Energy

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Green Alchemy: Catalytic Combo Transforms CO2 to Solid Carbon Nanofibers

Tandem electrocatalytic-thermocatalytic conversion could help offset emissions of potent greenhouse gas by locking carbon away in a useful material. Scientists at the U.S. Department of Energy’s (DOE) Brookhaven National Laboratory and Columbia University have developed a way to convert carbon di
Jingguang Chen Sooyeon Hwang Feco Ce Zhenhua Xie Lawrence Berkeley National Laboratory Brookhaven Lab

BNL-led team finds electrolyte additive enables stable high-voltage cycling of nickel-rich layered cathodes

A team of researchers led by chemists at the US Department of Energy’s (DOE) Brookhaven National Laboratory has shown that using an appropriate amount of lithium difluorophosphate in a common commercial electrolyte enables stable cycling of nickel-rich layered cathode materials with an ultra-high cut-off voltage of 4.8 V. A paper on...
Zulipiya Shadike Jizhou Li Brookhaven Lab Brookhaven Lab Center Energy Storage Research Laboratory Directed Research

Research Could Lead to Improvements in the Energy Density of Lithium Batteries

A team of researchers led by chemists at the U.S. Department of Energy's (DOE) Brookhaven National Laboratory has learned that an electrolyte additive allows stable high-voltage cycling of nickel-rich layered cathodes. Their work could lead to improvements in the energy density of lithium batteries that power electric vehicles.
Zulipiya Shadike Laura Thomsonjun Jizhou Li Brookhaven Lab Brookhaven Lab Center Nature Energy
Source: azom.com

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