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Materials Science

D-Index
56
Citations
12839
World Ranking
8195
National Ranking
2021

Overview

Hsin Wang is affiliated with the Oak Ridge National Laboratory in the United States. The research areas focus predominantly on engineering and materials science, with a substantial number of publications also addressing subfields such as materials chemistry, electrical and electronic engineering, automotive engineering, mechanical engineering, and aerospace engineering.

The primary topics of Hsin Wang's work include advanced thermoelectric materials and devices, chalcogenide semiconductor thin films, advanced battery technologies research, advancements in battery materials, additive manufacturing and 3D printing technologies, advanced ceramic materials synthesis, and quantum dots synthesis and properties.

Frequent publication venues where Wang's research appears include:

  • SSRN Electronic Journal
  • Journal of Nuclear Materials
  • Journal of Alloys and Compounds
  • Dalton Transactions
  • Journal of Power Sources

Co-authorship collaborations have involved multiple researchers with whom Wang has published extensively. Frequent co-authors include George S. Nolas, Wilarachchige D. C. B. Gunatilleke, Xiaoqing Zhu, Oluwagbemiga P. Ojo, and Zhenpo Wang.

Representative recent papers authored or co-authored by Hsin Wang are:

  • Overcharge-to-thermal-runaway behavior and safety assessment of commercial lithium-ion cells with different cathode materials: A comparison study (2020, Journal of Energy Chemistry)
  • Internal short circuit and failure mechanisms of lithium-ion pouch cells under mechanical indentation abuse conditionsAn experimental study (2020, Journal of Power Sources)
  • Additive manufacturing of ceramic materials for energy applications: Road map and opportunities (2022, Journal of the European Ceramic Society)
  • Fast growth of large-grain and continuous MoS2 films through a self-capping vapor-liquid-solid method (2020, Nature Communications)
  • Explosion behavior investigation and safety assessment of large-format lithium-ion pouch cells (2022, Journal of Energy Chemistry)

Best Publications

  • Multiple-filled skutterudites: high thermoelectric figure of merit through separately optimizing electrical and thermal transports.

    Xun Shi;Xun Shi;Jiong Yang;James R. Salvador;Miaofang Chi

  • Investigation of reactions between vanadium oxide and plasma-sprayed yttria-stabilized zirconia coatings

    Zun Chen;Scott A Speakman;Jane Y Howe;Hsin Wang

  • Thermal properties of lithium-ion battery and components

    Hossein Maleki;Said Al Hallaj;J. Robert Selman;Ralph B. Dinwiddie

  • Thermal properties of Ti3SiC2

    M.W. Barsoum;T. El-Raghy;C.J. Rawn;W.D. Porter

  • Thermophysical Properties of ZrB2 and ZrB2–SiC Ceramics

    James W. Zimmermann;Gregory E. Hilmas;William G. Fahrenholtz;Ralph B. Dinwiddie

  • The effect of grain size, porosity and yttria content on the thermal conductivity of nanocrystalline zirconia

    Srinivasan Raghavan;Hsin Wang;Ralph B Dinwiddie;Wallace D Porter

  • Column Formation in Suspension Plasma-Sprayed Coatings and Resultant Thermal Properties

    Kent VanEvery;Matthew J. M. Krane;Rodney W. Trice;Hsin Wang

  • Overcharge-to-thermal-runaway behavior and safety assessment of commercial lithium-ion cells with different cathode materials: A comparison study

    Zhenpo Wang;Jing Yuan;Xiaoqing Zhu;Hsin Wang

  • On the Design of High-Efficiency Thermoelectric Clathrates through a Systematic Cross-Substitution of Framework Elements

    Xun Shi;Jiong Yang;Shengqiang Bai;Jihui Yang

  • Overcharge investigation of large format lithium-ion pouch cells with Li(Ni0.6Co0.2Mn0.2)O2 cathode for electric vehicles: Thermal runaway features and safety management method

    Xiaoqing Zhu;Xiaoqing Zhu;Zhenpo Wang;Yituo Wang;Hsin Wang

  • Carbon-Nanotube-Reinforced Polymer-Derived Ceramic Composites

    Linan An;Weixing Xu;Sudhir Rajagopalan;Chongmin Wang

  • Ultrastrong, Stiff and Multifunctional Carbon Nanotube Composites

    Xin Wang;Zhenzhong Yong;Qingwen Li;Philip D. Bradford

  • Phase stability, sintering, and thermal conductivity of plasma-sprayed ZrO2–Gd2O3 compositions for potential thermal barrier coating applications

    Mohamed N. Rahaman;Jacob R. Gross;Rollie E. Dutton;Hsin Wang

  • Thermal properties of zirconia co-doped with trivalent and pentavalent oxides

    S. Raghavan;H. Wang;W.D. Porter;R.B. Dinwiddie

  • Fast and highly anisotropic thermal transport through vertically aligned carbon nanotube arrays

    Ilia Ivanov;Alexander Puretzky;Gyula Eres;Hsin Wang

  • Microstructure–Thermal Conductivity Relationships for Plasma‐Sprayed Yttria‐Stabilized Zirconia Coatings

    Weiguang Chi;Sanjay Sampath;Hsin Wang

  • Effect of heat treatment on phase stability, microstructure, and thermal conductivity of plasma-sprayed YSZ

    R. W. Trice;Y. Jennifer Su;J. R. Mawdsley;K. T. Faber

  • Experimental simulation of internal short circuit in Li-ion and Li-ion-polymer cells

    Wei Cai;Hsin Wang;Hossein Maleki;Jason Howard

  • Transport Properties of Bulk Thermoelectrics: An International Round-Robin Study, Part II: Thermal Diffusivity, Specific Heat, and Thermal Conductivity

    Hsin Wang;Wallace D. Porter;Harald Böttner;Jan König

  • Internal short circuit and failure mechanisms of lithium-ion pouch cells under mechanical indentation abuse conditions:An experimental study

    Xiaoqing Zhu;Xiaoqing Zhu;Xiaoqing Zhu;Hsin Wang;Xue Wang;Yanfei Gao

  • Thermographic detection of fatigue damage of pressure vessel steels at 1,000 Hz and 20 Hz

    P.K Liaw;H Wang;L Jiang;B Yang

Frequent Co-Authors

George S. Nolas
George S. Nolas University of South Florida
Jihui Yang
Jihui Yang University of Washington
Edgar Lara-Curzio
Edgar Lara-Curzio Oak Ridge National Laboratory
Lidong Chen
Lidong Chen Chinese Academy of Sciences
Xun Shi
Xun Shi Chinese Academy of Sciences
Gabriel M. Veith
Gabriel M. Veith Oak Ridge National Laboratory
Sanjay Sampath
Sanjay Sampath Stony Brook University
Bin Hu
Bin Hu University of Tennessee at Knoxville
Sreekanth Pannala
Sreekanth Pannala Saudi Arabia Basic Industries (United States)
Peter K. Liaw
Peter K. Liaw University of Tennessee at Knoxville

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