Jihui Yang, Ph.D.

Affiliations: 
1996-2000 Physics University of Michigan, Ann Arbor, Ann Arbor, MI 
 2000-2011 General Motors 
 2011- Materials Science University of Washington, Seattle, Seattle, WA 
Area:
Condensed Matter Physics
Website:
https://mse.washington.edu/people/faculty/jihui-yang
Google:
"Jihui Yang"
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Parents

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Ctirad Uher grad student 2000 University of Michigan
 (Low thermal conductivity materials for advanced thermoelectric applications.)
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Publications

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Yang D, Su X, Li J, et al. (2020) Blocking Ion Migration Stabilizes the High Thermoelectric Performance in Cu Se Composites. Advanced Materials (Deerfield Beach, Fla.). e2003730
Jia X, Liu C, Neale ZG, et al. (2020) Active Materials for Aqueous Zinc Ion Batteries: Synthesis, Crystal Structure, Morphology, and Electrochemistry. Chemical Reviews. 120: 7795-7866
Liu C, Tian M, Wang M, et al. (2020) Catalyzing zinc-ion intercalation in hydrated vanadates for aqueous zinc-ion batteries Journal of Materials Chemistry. 8: 7713-7723
Ren GK, Wang S, Zhou Z, et al. (2019) Complex electronic structure and compositing effect in high performance thermoelectric BiCuSeO. Nature Communications. 10: 2814
Yang J, Wang Y, Yang H, et al. (2019) Thermal transport in thermoelectric materials with chemical bond hierarchy. Journal of Physics. Condensed Matter : An Institute of Physics Journal
Liu B, Yang J, Yang H, et al. (2019) Rationalizing the interphase stability of Li|doped-Li7La3Zr2O12via automated reaction screening and machine learning Journal of Materials Chemistry. 7: 19961-19969
Qin J, Lin F, Hubble D, et al. (2019) Tuning self-healing properties of stiff, ion-conductive polymers Journal of Materials Chemistry. 7: 6773-6783
Liu J, Bao Z, Cui Y, et al. (2019) Pathways for practical high-energy long-cycling lithium metal batteries Nature Energy. 4: 180-186
Yan Y, Geng W, Qiu J, et al. (2018) Thermoelectric properties of n-type ZrNiSn prepared by rapid non-equilibrium laser processing. Rsc Advances. 8: 15796-15803
Yan Y, Ke H, Yang J, et al. (2018) Fabrication and thermoelectric properties of n-type CoSb2.85Te0.15 using selective laser melting. Acs Applied Materials & Interfaces
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