activity
20152020
most citedMaterials discovery and properties prediction in thermal transport via materials informatics: a mini-review

137 citations · 160 across the 4 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall202019 cited

Reduction of interfacial thermal resistance of overlapped graphene by bonding carbon chains

Yuwen Huang, Wentao Feng, Xiaoxiang Yu +2

Exploring the mechanism of interfacial thermal transport and reducing the interfacial thermal resistance is of great importance for thermal management and modulation. Herein, the i…

cond-mat.mes-hall2019

Cross interface model for the thermal transport across interface between overlapped boron nitride nanoribbons

Wentao Feng, Xiaoxiang Yu, Yue Wang +4

The application of low-dimensional materials for heat dissipation requires a comprehensive understanding of the thermal transport at the cross interface, which widely exists in var…

cond-mat.mtrl-sci2019137 cited

Materials discovery and properties prediction in thermal transport via materials informatics: a mini-review

Xiao Wan, Wentao Feng, Yunpeng Wang +2

There has been an increasing demand for materials with special thermal properties, whereas experimental discovery is high-cost and time-consuming. The emerging discipline `Material…

physics.app-ph20192 cited

Efficiency enhancement on the solar steam generation by wick materials with wrapped graphene nanoparticles

Xiaojia Li, Guangqiao Xu, Guilong Peng +3

Solar steam generation technology can utilize abundant and renewable solar energy for many applications. In this work, we proposed a solar steam generator using wick material with…

cond-mat.mes-hall2016

Enhancement of interfacial thermal conductance of SiC by overlapped carbon nanotubes and intertube atoms

Chengcheng Deng, Xiaoxiang Yu, Xiaoming Huang +1

We proposed a new way, adding intertube atoms, to enhance interfacial thermal conductance (ITC) between SiC-carbon nanotube (CNT) array structure. Non-equilibrium molecular dynamic…

cond-mat.mtrl-sci20152 cited

Extremely High Thermal Conductivity of Aligned Bulk Carbon Nanotube-Polyethylene Composites

Quanwen Liao, Zhichun Liu, Wei Liu +2

The poor thermal conductivity of bulk polymers may be enhanced by combining them with high thermal conductivity materials such as carbon nanotubes. Different from random doping, we…