World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
53
Citations
13175
World Ranking
3335
National Ranking
989

Overview

Xinwei Wang is affiliated with Iowa State University in the United States and has contributed extensively to the fields of Materials Science and Engineering. Their research spans a wide range of topics primarily focused on thermal properties and applications of advanced materials.

The main areas of study in Wang's work include Materials Chemistry and Electrical and Electronic Engineering, with additional contributions in Biomedical Engineering, Civil and Structural Engineering, and Mechanics of Materials.

Wang's research topics cover:

  • Thermal properties of materials
  • Graphene research and applications
  • Thermal Radiation and Cooling Technologies
  • Advanced Thermoelectric Materials and Devices
  • Advancements in Battery Materials
  • 2D Materials and Applications
  • Thermography and Photoacoustic Techniques

Recent papers authored or co-authored by Wang demonstrate involvement in various aspects of material sciences and thermal analysis. Notable works include:

  • Electrocatalysis degradation of tetracycline in a three-dimensional aeration electrocatalysis reactor (3D-AER) with a flotation-tailings particle electrode (FPE): Physicochemical properties, influencing factors and the degradation mechanism, 2020, Journal of Hazardous Materials
  • Photothermal phenomenon: Extended ideas for thermophysical properties characterization, 2022, Journal of Applied Physics
  • Raman-based Nanoscale Thermal Transport Characterization: A Critical Review, 2020, International Journal of Heat and Mass Transfer
  • Effect of temperature on Raman intensity of nm-thick WS2: combined effects of resonance Raman, optical properties, and interface optical interference, 2020, Nanoscale
  • Distinguishing Optical and Acoustic Phonon Temperatures and Their Energy Coupling Factor under Photon Excitation in nm 2D Materials, 2020, Advanced Science

Frequent co-authors collaborating with Wang include:

  • Hamidreza Zobeiri
  • Shen Xu
  • Nicholas Hunter
  • Yangsu Xie
  • Mahya Rahbar

Wang has published regularly in a range of venues with multiple contributions, notably in:

  • SSRN Electronic Journal
  • International Journal of Heat and Mass Transfer
  • Journal of Applied Physics
  • Carbon
  • Applied Physics Letters

Best Publications

  • Thermal Conductivity of Nanoparticle -Fluid Mixture

    Xinwei Wang;Xianfan Xu;Stephen U. S. Choi

  • Effect of ball milling on graphene reinforced Al6061 composite fabricated by semi-solid sintering

    Mina Bastwros;Gap-Yong Kim;Can Zhu;Kun Zhang

  • Significant thermal conductivity enhancement for nanofluids containing graphene nanosheets

    Wei Yu;Wei Yu;Huaqing Xie;Xiaoping Wang;Xinwei Wang

  • Thermopower enhancement in conducting polymer nanocomposites via carrier energy scattering at the organic–inorganic semiconductor interface

    Ming He;Jing Ge;Zhiqun Lin;Xuhui Feng

  • Development of the Miniaturized Four-sensor Conductivity Probe and the Signal Processing Scheme

    S. Kim;X.Y. Fu;X. Wang;M. Ishii

  • Temperature dependence of electrical and thermal conduction in single silver nanowire.

    Zhe Cheng;Longju Liu;Shen Xu;Meng Lu

  • Thermoelastic wave induced by pulsed laser heating

    X. Wang;X. Xu

  • New Secrets of Spider Silk: Exceptionally High Thermal Conductivity and Its Abnormal Change under Stretching

    Xiaopeng Huang;Guoqing Liu;Xinwei Wang

  • Thermal characterization of microscale conductive and nonconductive wires using transient electrothermal technique

    Jiaqi Guo;Xinwei Wang;Tao Wang

  • Thermal Transport in Graphene Nanostructures: Experiments and Simulations

    Luis A. Jauregui;Yanan Yue;Anton N. Sidorov;Jiuning Hu

  • Nanoscale thermal probing.

    Yanan Yue;Xinwei Wang

  • Thermal diffusivity and conductivity of multiwalled carbon nanotube arrays

    Huaqing Xie;An Cai;Xinwei Wang

  • Generalized theory of the photoacoustic effect in a multilayer material

    Hanping Hu;Xinwei Wang;Xianfan Xu

  • Interface-mediated extremely low thermal conductivity of graphene aerogel

    Yangsu Xie;Shen Xu;Zaoli Xu;Hongchao Wu

  • Thermal properties of carbon nanotube array used for integrated circuit cooling

    Yuan Xu;Yi Zhang;Ephraim Suhir;Xinwei Wang

  • Photothermal phenomenon: Extended ideas for thermophysical properties characterization

    Unknown

  • Micro/Nanoscale Spatial Resolution Temperature Probing for the Interfacial Thermal Characterization of Epitaxial Graphene on 4H‐SiC

    Yanan Yue;Jingchao Zhang;Xinwei Wang

  • Photo-acoustic measurement of thermal conductivity of thin films and bulk materials

    Xinwei Wang;Hanping Hu;Xianfan Xu

  • Noncontact thermal characterization of multiwall carbon nanotubes

    Xinwei Wang;Zhanrong Zhong;Jun Xu

  • Novel Polyethylene Fibers of Very High Thermal Conductivity Enabled by Amorphous Restructuring.

    Bowen Zhu;Jing Liu;Tianyu Wang;Meng Han

  • Thermophysical properties of thermal barrier coatings

    R.E. Taylor;X. Wang;X. Xu

  • Temperature dependence of electrical and thermal conduction in single silver nanowire

    Zhe Cheng;Longju Liu;Meng Lu;Xinwei Wang

Frequent Co-Authors

Xianfan Xu
Xianfan Xu Purdue University West Lafayette
Huaqing Xie
Huaqing Xie Shanghai Second Polytechnic University
Yongfeng Lu
Yongfeng Lu University of Nebraska–Lincoln
Gyula Eres
Gyula Eres Oak Ridge National Laboratory
Yue Wu
Yue Wu Iowa State University
Hui-Ming Cheng
Hui-Ming Cheng Shenzhen Institutes of Advanced Technology
Wei Yu
Wei Yu Shanghai Second Polytechnic University
Kefa Cen
Kefa Cen Zhejiang University
Zhongyang Luo
Zhongyang Luo Zhejiang University
Xiao Cheng Zeng
Xiao Cheng Zeng City University of Hong Kong

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