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Researcher
- Tomonori Saito
- Sheng Dai
- Radu Custelcean
- Amit Shyam
- Anisur Rahman
- Jeff Foster
- Parans Paranthaman
- Zhenzhen Yang
- Bishnu Prasad Thapaliya
- Costas Tsouris
- Diana E Hun
- Alex Plotkowski
- Amit K Naskar
- Bruce Moyer
- Craig A Bridges
- Edgar Lara-Curzio
- Gyoung Gug Jang
- Ilja Popovs
- Jeffrey Einkauf
- Mary Danielson
- Shannon M Mahurin
- Syed Islam
- Zoriana Demchuk
- Alexei P Sokolov
- Benjamin L Doughty
- Catalin Gainaru
- Frederic Vautard
- Gs Jung
- Isaiah Dishner
- James A Haynes
- Jaswinder Sharma
- Josh Michener
- Li-Qi Qiu
- Liangyu Qian
- Logan Kearney
- Michael Toomey
- Michelle Lehmann
- Natasha Ghezawi
- Nihal Kanbargi
- Nikki Thiele
- Ramesh Bhave
- Ryan Dehoff
- Santa Jansone-Popova
- Saurabh Prakash Pethe
- Shiwanka Vidarshi Wanasinghe Wanasinghe Mudiyanselage
- Som Shrestha
- Sumit Bahl
- Tolga Aytug
- Uday Vaidya
- Vera Bocharova
- Achutha Tamraparni
- Adam Stevens
- Ahmed Hassen
- Alexander I Wiechert
- Alice Perrin
- Andre O Desjarlais
- Andres Marquez Rossy
- Anees Alnajjar
- Arit Das
- Ben Lamm
- Beth L Armstrong
- Brian Post
- Christopher Bowland
- Christopher Fancher
- Corson Cramer
- Dean T Pierce
- Eric Wolfe
- Felix L Paulauskas
- Gerry Knapp
- Gordon Robertson
- Holly Humphrey
- Jayanthi Kumar
- Jay Reynolds
- Jeff Brookins
- Jennifer M Pyles
- John F Cahill
- Jong K Keum
- Jovid Rakhmonov
- Karen Cortes Guzman
- Kaustubh Mungale
- Kuma Sumathipala
- Laetitia H Delmau
- Luke Sadergaski
- Md Faizul Islam
- Meghan Lamm
- Mengjia Tang
- Mina Yoon
- Nageswara Rao
- Nicholas Richter
- Nick Galan
- Nick Gregorich
- Nidia Gallego
- Peeyush Nandwana
- Peter Wang
- Phillip Halstenberg
- Rangasayee Kannan
- Robert E Norris Jr
- Robert Sacci
- Roger G Miller
- Santanu Roy
- Sarah Graham
- Shailesh Dangwal
- Shajjad Chowdhury
- Subhamay Pramanik
- Sudarsanam Babu
- Sumit Gupta
- Sunyong Kwon
- Tao Hong
- Uvinduni Premadasa
- Vlastimil Kunc
- William Peter
- Ying Yang
- Yingzhong Ma
- Yukinori Yamamoto

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

This invention introduces an innovative method for upcycling waste polyalkenamers, such as polybutadiene and acrylonitrile butadiene styrene, into high-performance materials through ring-opening metathesis polymerization (ROMP).

The increasing demand for high-purity lanthanides, essential for advanced technologies such as electronics, renewable energy, and medical applications, presents a significant challenge due to their similar chemical properties.

With the ever-growing reliance on batteries, the need for the chemicals and materials to produce these batteries is also growing accordingly. One area of critical concern is the need for high quality graphite to ensure adequate energy storage capacity and battery stability.

With the ever-increasing problem of plastic waste, several avenues to decrease plastic use and manage waste introduced by disposable plastic products have arisen.

This invention utilizes a salt and an amine containing small molecule or polymer for the synthesis of a bulky anionic salt or containing single-ion conducting polymer electrolyte for the use in Li-ion and beyond Li-ion batteries.

Carbon capture from air typically requires large amounts of solvent and sorbent that are energetically costly to regenerate. It also suffers from degradation, is environmentally unsustainable, and very expensive.

The incorporation of low embodied carbon building materials in the enclosure is increasing the fuel load for fire, increasing the demand for fire/flame retardants.

This technology identifies enzymatic routes to synthesize amide oligomers with defined sequence to improve polymerization of existing materials or enable polymerization of new materials. Polymers are generally composed of one (e.g. Nylon 6) or two (e.g.