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Researcher
- Brian Post
- Corson Cramer
- Steve Bullock
- Peter Wang
- Beth L Armstrong
- Tomonori Saito
- Ahmed Hassen
- Andrzej Nycz
- Blane Fillingim
- Chris Masuo
- Gabriel Veith
- Greg Larsen
- Guang Yang
- James Klett
- Lawrence {Larry} M Anovitz
- Michelle Lehmann
- Sudarsanam Babu
- Thomas Feldhausen
- Trevor Aguirre
- Vlastimil Kunc
- Craig Blue
- Ethan Self
- J.R. R Matheson
- Jaswinder Sharma
- John Lindahl
- Joshua Vaughan
- Lauren Heinrich
- Peeyush Nandwana
- Robert Sacci
- Sergiy Kalnaus
- Steven Guzorek
- Yousub Lee
- Adam Stevens
- Alexey Serov
- Alex Roschli
- Amanda Musgrove
- Amit K Naskar
- Amit Shyam
- Andrew G Stack
- Anisur Rahman
- Anna M Mills
- Brian Gibson
- Cameron Adkins
- Chanho Kim
- Charlie Cook
- Christopher Fancher
- Christopher Hershey
- Christopher Ledford
- Chris Tyler
- Daniel Rasmussen
- David J Mitchell
- David Olvera Trejo
- Dustin Gilmer
- Felipe Polo Garzon
- Georgios Polyzos
- Gordon Robertson
- Ilias Belharouak
- Isha Bhandari
- Jay Reynolds
- Jeff Brookins
- Jesse Heineman
- John Potter
- Jordan Wright
- Juliane Weber
- Jun Yang
- Junyan Zhang
- Khryslyn G Araño
- Liam White
- Logan Kearney
- Luke Meyer
- Matthew S Chambers
- Michael Borish
- Michael Kirka
- Michael Toomey
- Nadim Hmeidat
- Nancy Dudney
- Nihal Kanbargi
- Peng Yang
- Rangasayee Kannan
- Ritin Mathews
- Roger G Miller
- Ryan Dehoff
- Sai Krishna Reddy Adapa
- Sana Elyas
- Sarah Graham
- Scott Smith
- Tony Beard
- Vera Bocharova
- William Carter
- William Peter
- Xiang Lyu
- Yukinori Yamamoto

This invention utilizes a custom-synthesized vinyl trifluoromethanesulfonimide (VTFSI) salt and an alcohol containing small molecule or polymer for the synthesis of novel single-ion conducting polymer electrolytes for the use in Li-ion and beyond Li-ion batteries, fuel cells,

CO2 capture by mineral looping, either using calcium or magnesium precursors requires that the materials be calcined after CO2 is captured from the atmosphere. This separates the CO2 for later sequestration and returned the starting material to its original state.

The technologies provide additively manufactured thermal protection system.

This manufacturing method uses multifunctional materials distributed volumetrically to generate a stiffness-based architecture, where continuous surfaces can be created from flat, rapidly produced geometries.

This is a novel approach to enhance the performance and durability of all-solid-state batteries (ASSBs) by focusing on two primary components: the Si anode and the thin electrolyte integration.

The lack of real-time insights into how materials evolve during laser powder bed fusion has limited the adoption by inhibiting part qualification. The developed approach provides key data needed to fabricate born qualified parts.

This invention focuses on improving the ceramic yield of preceramic polymers by tuning the crosslinking process that occurs during vat photopolymerization (VP).

Fabrication methods are needed that are easily scalable, will enable facile manufacturing of SSEs that are < 50 µm thick to attain high energy density, and also exhibit good stability at the interface of the anode. Specifically, Wu et al.

We developed and incorporated two innovative mPET/Cu and mPET/Al foils as current collectors in LIBs to enhance cell energy density under XFC conditions.