Yang Shao-Horn
Affiliations: | 2002- | Mechanical Engineering | Massachusetts Institute of Technology, Cambridge, MA, United States |
Area:
battery materials, lithium-air, fuel cells, catalysisWebsite:
https://dmse.mit.edu/faculty/profile/shao-hornGoogle:
"Yang Shao-Horn"Parents
Sign in to add mentorStephen A. Hackney | grad student | 1994-1998 | Michigan Technological University |
Children
Sign in to add traineeJaclyn Lunger | grad student | 2017- | MIT |
Michael Stolberg | grad student | 2018- | MIT |
Daniele Vivona | grad student | 2019- | MIT |
Daniel Zheng | grad student | 2019- | MIT |
Daniel Wang | grad student | 2021- | MIT |
Hongbin Xu | grad student | 2021- | MIT |
Haldrian Iriawan | grad student | 2022- | MIT |
Armando Neto | grad student | 2022- | MIT |
Christian Plaza-Rivera | grad student | 2022- | MIT |
Xiao Wang | grad student | 2022- | MIT |
Joseph S Elias | grad student | 2011-2016 | MIT (Chemistry Tree) |
Koffi Pierre Yao | grad student | 2011-2016 | MIT (Chemistry Tree) |
Binghong Han | grad student | 2012-2016 | MIT (Chemistry Tree) |
Reshma Rao | grad student | 2014-2019 | MIT |
Karthik Akkiraju | grad student | 2015-2021 | MIT |
Graham Leverick | grad student | 2016-2021 | MIT |
Thaneer Malai Narayanan | grad student | 2016-2021 | MIT |
Yang Yu | grad student | 2016-2021 | MIT |
Jiayu Peng | grad student | 2017-2022 | MIT |
Yirui Zhang | grad student | 2017-2022 | MIT |
Bin Cai | post-doc | (Chemistry Tree) | |
Don-Hyung Ha | post-doc | MIT | |
Nenian Charles | post-doc | 2017- | MIT (Chemistry Tree) |
Shuai Yuan | post-doc | 2018- | MIT (Chemistry Tree) |
Kiarash Gordiz | post-doc | 2019- | MIT |
Sunmoon Yu | post-doc | 2022- | MIT (Chemistry Tree) |
Bo Qiao | post-doc | 2018-2020 | MIT |
Jeffrey Lopez | post-doc | 2018-2021 | MIT |
Jin Soo Kang | post-doc | 2019-2021 | MIT |
Yunguang Zhu | post-doc | 2018-2022 | MIT |
Sipei Li | post-doc | 2020-2022 | MIT |
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Publications
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Kim J, Gordiz K, Vivona D, et al. (2023) Local Structural Environments in Perovskite Oxide Solid Electrolytes. Microscopy and Microanalysis : the Official Journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada. 29: 1270-1271 |
Chanut N, Stefaniuk D, Weaver JC, et al. (2023) Carbon-cement supercapacitors as a scalable bulk energy storage solution. Proceedings of the National Academy of Sciences of the United States of America. 120: e2304318120 |
Stolberg MA, Paren BA, Leon PA, et al. (2023) Lamellar Ionenes with Highly Dissociative, Anionic Channels Provide Lower Barriers for Cation Transport. Journal of the American Chemical Society |
Bradford G, Lopez J, Ruza J, et al. (2023) Chemistry-Informed Machine Learning for Polymer Electrolyte Discovery. Acs Central Science. 9: 206-216 |
Scott SB, Rao RR, Moon C, et al. (2022) The low overpotential regime of acidic water oxidation part I: the importance of O detection. Energy & Environmental Science. 15: 1977-1987 |
Scott SB, Sørensen JE, Rao RR, et al. (2022) The low overpotential regime of acidic water oxidation part II: trends in metal and oxygen stability numbers. Energy & Environmental Science. 15: 1988-2001 |
Xie T, France-Lanord A, Wang Y, et al. (2022) Accelerating amorphous polymer electrolyte screening by learning to reduce errors in molecular dynamics simulated properties. Nature Communications. 13: 3415 |
Ren Z, Ruan L, Yin L, et al. (2022) Surface Oxygen Vacancies Confined by Ferroelectric Polarization for Tunable CO Oxidation Kinetics. Advanced Materials (Deerfield Beach, Fla.). e2202072 |
Yuan S, Peng J, Cai B, et al. (2022) Tunable metal hydroxide-organic frameworks for catalysing oxygen evolution. Nature Materials |
Leverick G, Feng S, Acosta P, et al. (2022) Tunable Redox Mediators for Li-O Batteries Based on Interhalide Complexes. Acs Applied Materials & Interfaces. 14: 6689-6701 |