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Wenzhong Bao

Wenzhong Bao

D-Index & Metrics

Materials Science

D-Index
73
Citations
45287
World Ranking
3734
National Ranking
1197

Overview

Wenzhong Bao is affiliated with Fudan University in China and has contributed extensively to the fields of engineering and materials science. Their research encompasses a broad spectrum of topics with a particular focus on materials chemistry and electrical and electronic engineering, with notable work also in biomedical engineering and cellular and molecular neuroscience.

The scientist's research prominently addresses areas including:

  • 2D materials and applications
  • Advanced memory and neural computing
  • Graphene research and applications
  • Ferroelectric and negative capacitance devices
  • MXene and MAX phase materials
  • Perovskite materials and applications
  • Nanowire synthesis and applications

Frequently collaborating researchers include Peng Zhou, Zihan Xu, Saifei Gou, Xinyu Chen, and Xiaojiao Guo, each contributing to a considerable number of publications with Bao.

Wenzhong Bao's publications span high-impact journals with multiple papers appearing in venues such as Nature Communications, Nature Electronics, Journal of Material Science and Technology, Nano Letters, and Advanced Functional Materials. Among the recent papers are:

  • "Integrated In-Sensor Computing Optoelectronic Device for Environment-Adaptable Artificial Retina Perception Application," 2021, Nano Letters
  • "Three-Dimensional Nanoscale Flexible Memristor Networks with Ultralow Power for Information Transmission and Processing Application," 2020, Nano Letters
  • "Flexible Ultrathin Single-Crystalline Perovskite Photodetector," 2020, Nano Letters
  • "12-inch Growth of Uniform MoS2 Monolayer for Integrated Circuit Manufacture," 2023, Nature Materials
  • "Ultrafast Materials Synthesis and Manufacturing Techniques for Emerging Energy and Environmental Applications," 2023, Chemical Society Reviews

The scientist's body of work reflects a strong emphasis on materials chemistry and device engineering, supporting advancements in optoelectronics, flexible electronics, and energy-related materials. Their research approach incorporates nanoscale materials synthesis, device fabrication, and system-level applications relevant to neural computing and environmental adaptability.

Best Publications

  • Superior Thermal Conductivity of Single-Layer Graphene

    Alexander A. Balandin;Suchismita Ghosh;Wenzhong Bao;Irene Calizo

  • Extremely high thermal conductivity of graphene: Prospects for thermal management applications in nanoelectronic circuits

    S. Ghosh;I. Calizo;D. Teweldebrhan;E. P. Pokatilov

  • Gate-tuning of graphene plasmons revealed by infrared nano-imaging

    Z. Fei;A. S. Rodin;G. O. Andreev;W. Bao;W. Bao

  • Dimensional crossover of thermal transport in few-layer graphene

    Suchismita Ghosh;Wenzhong Bao;Denis L. Nika;Samia Subrina

  • Controlled ripple texturing of suspended graphene and ultrathin graphite membranes

    Wenzhong Bao;Feng Miao;Zhen Chen;Hang Zhang

  • Temperature dependence of the Raman spectra of graphene and graphene multilayers

    I. Calizo;A. A. Balandin;W. Bao;F. Miao

  • Dimensional crossover of thermal transport in few-layer graphene materials

    Suchismita Ghosh;Wenzhong Bao;Denis L. Nika;Samia Subrina

  • Potassium Ion Batteries with Graphitic Materials

    Wei Luo;Jiayu Wan;Burak Ozdemir;Wenzhong Bao

  • Phase-coherent transport in graphene quantum billiards.

    F. Miao;S. Wijeratne;Y. Zhang;U. C. Coskun

  • High mobility ambipolar MoS2 field-effect transistors: Substrate and dielectric effects

    Wenzhong Bao;Xinghan Cai;Dohun Kim;Karthik Sridhara

  • Infrared nanoscopy of dirac plasmons at the graphene-SiO₂ interface.

    Zhe Fei;Gregory O. Andreev;Wenzhong Bao;Lingfeng M. Zhang;Lingfeng M. Zhang

  • Infrared nanoscopy of Dirac plasmons at the graphene-SiO2 interface

    Zhe Fei;Gregory O. Andreev;Wenzhong Bao;Lingfeng M. Zhang

  • Stacking-dependent band gap and quantum transport in trilayer graphene

    Wenzhong Bao;Lei Jing;J. Velasco;Y.-W. Lee

  • Anomalous thermoelectric transport of Dirac particles in graphene

    Peng Wei;Wenzhong Bao;Yong Pu;Chun Ning Lau

  • Tuning two-dimensional nanomaterials by intercalation: materials, properties and applications

    Jiayu Wan;Steven D. Lacey;Jiaqi Dai;Wenzhong Bao

  • Graphene-based atomic-scale switches.

    Brian Standley;Wenzhong Bao;Hang Zhang;Jehoshua Bruck

  • Thermal contact resistance between graphene and silicon dioxide

    Z. Chen;W. Jang;W. Bao;C. N. Lau

  • Thickness-Dependent Thermal Conductivity of Encased Graphene and Ultrathin Graphite

    Wanyoung Jang;Zhen Chen;Wenzhong Bao;Chun Ning Lau

  • Transport spectroscopy of symmetry-broken insulating states in bilayer graphene

    J. Velasco;L. Jing;W. Bao;Y. Lee

  • Electronic doping and scattering by transition metals on graphene

    K. Pi;K. M. McCreary;W. Bao;Wei Han

  • PROOF COPY 020815APL Extremely high thermal conductivity of graphene: Prospects for thermal management applications in nanoelectronic circuits

    S. Ghosh;I. Calizo;D. Teweldebrhan;E. P. Pokatilov

Frequent Co-Authors

Chun Ning Lau
Chun Ning Lau The Ohio State University
Michael S. Fuhrer
Michael S. Fuhrer Monash University
Peng Zhou
Peng Zhou Fudan University
Feng Miao
Feng Miao Nanjing University
David Wei Zhang
David Wei Zhang Fudan University
Liangbing Hu
Liangbing Hu Yale University
Marc Bockrath
Marc Bockrath The Ohio State University
Jiayu Wan
Jiayu Wan Shanghai Jiao Tong University
Shi-Jin Ding
Shi-Jin Ding Fudan University
Dimitri Basov
Dimitri Basov Columbia University

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