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Researcher
- Vivek Sujan
- Beth L Armstrong
- Rama K Vasudevan
- Sergei V Kalinin
- Yongtao Liu
- Jun Qu
- Kevin M Roccapriore
- Kyle Kelley
- Maxim A Ziatdinov
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- Gerry Knapp
- Gs Jung
- Gyoung Gug Jang
- Hoyeon Jeon
- Huixin (anna) Jiang
- Hyeonsup Lim
- Ilia N Ivanov
- Isabelle Snyder
- Ivan Vlassiouk
- James Klett
- Jamieson Brechtl
- Jewook Park
- Jong K Keum
- Jordan Wright
- Jovid Rakhmonov
- Kai Li
- Khryslyn G Araño
- Kyle Gluesenkamp
- Liam Collins
- Mahshid Ahmadi-Kalinina
- Marm Dixit
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- Matthew S Chambers
- Md Inzamam Ul Haque
- Michael Kirka
- Mina Yoon
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- Neus Domingo Marimon
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- Nickolay Lavrik
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- Peeyush Nandwana
- Radu Custelcean
- Rangasayee Kannan
- Saban Hus
- Sai Mani Prudhvi Valleti
- Sergiy Kalnaus
- Steven Randolph
- Sumner Harris
- Sunyong Kwon
- Tolga Aytug
- Trevor Aguirre
- Utkarsh Pratiush
- Ying Yang
- Yiyu Wang
- Zhiming Gao

Dual-GP addresses limitations in traditional GPBO-driven autonomous experimentation by incorporating an additional surrogate observer and allowing human oversight, this technique improves optimization efficiency via data quality assessment and adaptability to unanticipated exp

Currently available cast Al alloys are not suitable for various high-performance conductor applications, such as rotor, inverter, windings, busbar, heat exchangers/sinks, etc.

The invented alloys are a new family of Al-Mg alloys. This new family of Al-based alloys demonstrate an excellent ductility (10 ± 2 % elongation) despite the high content of impurities commonly observed in recycled aluminum.

The growing demand for electric vehicles (EVs) has necessitated significant advancements in EV charging technologies to ensure efficient and reliable operation.

The growing demand for renewable energy sources has propelled the development of advanced power conversion systems, particularly in applications involving fuel cells.

A new nanostructured bainitic steel with accelerated kinetics for bainite formation at 200 C was designed using a coupled CALPHAD, machine learning, and data mining approach.

The invention introduces a novel, customizable method to create, manipulate, and erase polar topological structures in ferroelectric materials using atomic force microscopy.

High coercive fields prevalent in wurtzite ferroelectrics present a significant challenge, as they hinder efficient polarization switching, which is essential for microelectronic applications.

Scanning transmission electron microscopes are useful for a variety of applications. Atomic defects in materials are critical for areas such as quantum photonics, magnetic storage, and catalysis.