most citedSingle-Phase Duodenary High-Entropy Fluorite/Pyrochlore Oxides with an Order-Disorder Transition

8 citations · 13 across the 4 of their papers we have counts for

collaborators

7 papers

cond-mat.mtrl-sci20208 cited

Single-Phase Duodenary High-Entropy Fluorite/Pyrochlore Oxides with an Order-Disorder Transition

Andrew J. Wright, Qingyang Wang, Chongze Hu +3

Improved thermomechanical properties have been reported for various high-entropy oxides containing typically five metal cations. This study further investigates a series of duodena…

cond-mat.mtrl-sci2020

Discovery of Electrochemically Induced Grain Boundary Transitions

Jiuyuan Nie, Chongze Hu, Qizhang Yan +1

Electric fields and currents, which are used in innovative materials processing and electrochemical energy conversion, can often alter microstructures in unexpected ways. However,…

cond-mat.mtrl-sci20201 cited

Decoding Grain Boundary Thermodynamics in High-Entropy Alloys in a 5D Space: Coupled Segregation and Disordering

Chongze Hu, Jian Luo

Grain boundaries (GBs) can critically influence the microstructural evolution and various materials properties. However, a fundamental understanding of GBs in high-entropy alloys (…

cond-mat.mtrl-sci20203 cited

High-Entropy Monoborides: Towards Superhard Materials

Mingde Qin, Qizhang Yan, Haoren Wang +2

Single-phase high-entropy monoborides (HEMBs) of the CrB prototype structure have been synthesized for the first time. Reactive spark plasma sintering of ball milled mixtures of el…

cond-mat.mtrl-sci20201 cited

Genetic Algorithm-Guided Deep Learning of Grain Boundary Diagrams: Addressing the Challenge of Five Degrees of Freedom

Chongze Hu, Yunxing Zuo, Chi Chen +2

Grain boundaries (GBs) often control the processing and properties of polycrystalline materials. Here, a potentially transformative research is represented by constructing GB prope…

cond-mat.mtrl-sci2020

Dual-Phase High-Entropy Ultra-High Temperature Ceramics

Mingde Qin, Joshua Gild, Chongze Hu +7

A series of dual-phase high-entropy ultrahigh temperature ceramics (DPHE-UHTCs) are fabricated starting from N binary borides and (5-N) binary carbides powders. >~99% relative dens…