activity
20242026
most citedAn interpretable formula for lattice thermal conductivity of crystals

20 citations · 55 across the 12 of their papers we have counts for

collaborators

14 papers

cond-mat.mtrl-sci2026

Four-phonon scattering and coherent heat transport in ultrawide-bandgap SrSnO3

Xuejie Li, Xiaoying Wang, Shengying Yue +4

SrSnO3 is a promising ultrawide-bandgap perovskite oxide whose thermal transport is governed by structural distortions and anharmonic lattice dynamics. Here, we investigate the lat…

cond-mat.mtrl-sci20261 cited

LLM-driven discovery for carbon allotropes with bond-network entropy

Yuzhou Hao, Yujie Liu, Xuejie Li +4

The discovery of novel carbon allotropes with tailored thermal and mechanical properties is critical for advanced thermal management. However, exploring the vast configurational sp…

cond-mat.mtrl-sci20262 cited

Role of octahedral tilting induced acoustic softening on limiting thermal transport in SrSnO3

Yuzhou Hao, Turab Lookman, Xiangdong Ding +2

Octahedral tilting is a fundamental structural distortion in perovskites, governing key phenomena such as lattice stabilizing, soft phonon dynamics, group-theoretical analysis, pha…

cond-mat.mtrl-sci2025

Metavalent Bonding-Induced Phonon Hardening and Giant Anharmonicity in BeO

Xuejie Li, Yuzhou Hao, Yujie Liu +6

The search for materials with intrinsically low thermal conductivity () is critical for energy applications, yet conventional descriptors often fail to capture the complex int…

cond-mat.mtrl-sci20251 cited

Machine learning-driven elasticity prediction in advanced inorganic materials via convolutional neural networks

Yujie Liu, Zhenyu Wang, Hang Lei +6

Inorganic crystal materials have broad application potential due to excellent physical and chemical properties, with elastic properties (shear modulus, bulk modulus) crucial for pr…

cond-mat.mtrl-sci2025

Carrier-phonon decoupling via annealing enhances thermoelectric performance of Bi2(Te,Se)3

Xinxiu Cheng, Liqing Xu, Zhibin Gao +4

Thermoelectric cooling based on the Peltier effect requires high-performance materials near room temperature. In this work, Bi2Te2.6Se0.4 synthesized by melting-hot pressing follow…