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Materials Science

D-Index
43
Citations
9374
World Ranking
12232
National Ranking
2815

Overview

Fuqian Yang is affiliated with the University of Kentucky in the United States. Their research focuses primarily on engineering and materials science, with significant contributions to electrical and electronic engineering, materials chemistry, automotive engineering, biomedical engineering, and mechanics of materials. Their work extensively covers advancements in battery and supercapacitor technologies along with studies in perovskite materials and quantum dots.

Their recent published papers include:

  • Evaluation of electrochemical performance of supercapacitors from equivalent circuits through cyclic voltammetry and galvanostatic charge/discharge, 2024, Journal of Energy Storage
  • Tuning electrochemical performance of carbon-sphere-based supercapacitors by compressive stress, 2020, Electrochimica Acta
  • Water-driven CsPbBr3 nanocrystals and poly(methyl methacrylate)-CsPbBr3 nanocrystal films with bending-endurable photoluminescence, 2021, Chemical Engineering Journal
  • Soybean-derived blue photoluminescent carbon dots, 2020, Beilstein Journal of Nanotechnology
  • In Situ Growth Mechanism for High-Quality Hybrid Perovskite Single-Crystal Thin Films with High Area to Thickness Ratio: Looking for the Sweet Spot, 2022, Advanced Science

Fuqian Yang frequently collaborates with several coauthors, including Yong Li, Kai Zhang, Sanboh Lee, Yulin Zhang, and Bailin Zheng. These collaborations have contributed to a substantial number of joint publications.

The scientist regularly publishes in journals such as:

  • Journal of Energy Storage
  • Physical Chemistry Chemical Physics
  • Electrochimica Acta
  • International Journal of Energy Research
  • Langmuir

Yang's main fields of study are Engineering and Materials Science, with a specialization in subfields such as Electrical and Electronic Engineering and Materials Chemistry. Their research topics focus on:

  • Advancements in Battery Materials
  • Advanced Battery Technologies Research
  • Supercapacitor Materials and Fabrication
  • Advanced Battery Materials and Technologies
  • Perovskite Materials and Applications
  • Quantum Dots Synthesis And Properties
  • Advanced Sensor and Energy Harvesting Materials

This body of work represents a comprehensive engagement with energy storage technologies, nanomaterial synthesis, and electrochemical performance optimization. Fuqian Yang's contributions provide a detailed exploration of material properties relevant to energy applications across multiple domains.

Best Publications

  • Crack Pattern Formation in Thin Film Lithium-Ion Battery Electrodes

    Juchuan Li;Alan K. Dozier;Yunchao Li;Fuqian Yang

  • Interaction between diffusion and chemical stresses

    Fuqian Yang

  • Growth of TiO2 nanorods by metalorganic chemical vapor deposition

    Siddhartha K. Pradhan;Philip J. Reucroft;Fuqian Yang;Alan Dozier

  • Hemp-derived activated carbons for supercapacitors

    Wei Sun;Stephen M. Lipka;Christopher Swartz;David Williams

  • Tensile ductility of an AlCoCrFeNi multi-phase high-entropy alloy through hot isostatic pressing (HIP) and homogenization

    Zhi Tang;Zhi Tang;Oleg N. Senkov;Chad M. Parish;Chuan Zhang

  • Size-dependent effective modulus of elastic composite materials: Spherical nanocavities at dilute concentrations

    Fuqian Yang

  • Potentiostatic Intermittent Titration Technique for Electrodes Governed by Diffusion and Interfacial Reaction

    Juchuan Li;Xingcheng Xiao;Fuqian Yang;Mark W. Verbrugge

  • Stiffness and contact mechanics for soft fingers in grasping and manipulation

    Unknown

  • Effect of high temperature annealing and subsequent hot rolling on microstructural evolution at the bond-interface of Al/Mg/Al alloy laminated composites

    Changzeng Luo;Wei Liang;Zhiqiang Chen;Jianjun Zhang

  • Aligned TiO2 Nanotube Arrays As Durable Lithium-Ion Battery Negative Electrodes

    Qing Liu Wu;Juchuan Li;Rutooj D. Deshpande;Navaladian Subramanian

  • Fracture mechanics for a Mode I crack in piezoelectric materials

    Fuqian Yang

  • Nanoindentation behavior of ultrathin polymeric films

    Kebin Geng;Fuqian Yang;Thad Druffel;Eric A. Grulke

  • Impression test—A review

    Fuqian Yang;James C.M. Li

  • Deformation behavior of tin and some tin alloys

    Fuqian Yang;J. C. M. Li

  • Diffusion-induced beam bending in hydrogen sensors

    Fuqian Yang;J. C. M. Li

  • Thickness effect on the indentation of an elastic layer

    Fuqian Yang

  • Asymptotic solution to axisymmetric indentation of a compressible elastic thin film

    Fuqian Yang

  • Effect of local solid reaction on diffusion-induced stress

    Fuqian Yang

  • A Tensile Deformation Model for In-situ Dendrite/Metallic Glass Matrix Composites

    J. W. Qiao;T. Zhang;Fuqian Yang;P. K. Liaw

  • Deformation in a Zr57Ti5Cu20Ni8Al10 bulk metallic glass during nanoindentation

    Fuqian Yang;Kebin Geng;Peter K. Liaw;Guojiang Fan

  • Micro-scratch study of a magnetron-sputtered Zr-based metallic-glass film

    F. X. Liu;F. Q. Yang;Yanfei Gao;Yanfei Gao;W. H. Jiang

  • Micro and Nano Mechanical Testing of Materials and Devices

    Fuqian Yang;James C. M. Li

Frequent Co-Authors

Peter K. Liaw
Peter K. Liaw University of Tennessee at Knoxville
Yang-Tse Cheng
Yang-Tse Cheng University of Kentucky
Jun Zhang
Jun Zhang University of Kentucky
Fu-Zhen Xuan
Fu-Zhen Xuan East China University of Science and Technology
Zhihua Wang
Zhihua Wang Arizona State University
Ya-Pu Zhao
Ya-Pu Zhao Chinese Academy of Sciences
Eric A. Grulke
Eric A. Grulke University of Kentucky
Linan An
Linan An University of Central Florida
Xingcheng Xiao
Xingcheng Xiao General Motors (United States)
Hahn Choo
Hahn Choo University of Tennessee at Knoxville

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