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Materials Science

D-Index
46
Citations
9771
World Ranking
11348
National Ranking
2664

Overview

Daihua Zhang is affiliated with Applied Materials (United States) and focuses on research at the intersection of materials science and engineering. Their work primarily explores the properties and applications of 2D materials, advanced memory devices, and electronic materials, contributing to advancements in both fundamental understanding and practical device engineering.

The main fields of study for Zhang include Materials Science and Engineering, with subfields emphasizing Materials Chemistry, Electrical and Electronic Engineering, Renewable Energy, Sustainability and the Environment, Biomedical Engineering, and Atomic and Molecular Physics, and Optics.

Zhang's research topics cover a range of areas such as:

  • 2D Materials and Applications
  • Advanced Memory and Neural Computing
  • Graphene Research and Applications
  • MXene and MAX Phase Materials
  • Perovskite Materials and Applications
  • Ferroelectric and Negative Capacitance Devices
  • Advanced Photocatalysis Techniques

The scientist has contributed articles to several notable journals and academic venues, including:

  • Nanoscale
  • Nanotechnology
  • Applied Physics Letters
  • Water Science & Technology
  • Nano Research

Among Zhang's recent publications are:

  • Multi-level flash memory device based on stacked anisotropic ReS2-boron nitride-graphene heterostructures, 2020, Nanoscale
  • Tunable and nonvolatile multibit data storage memory based on MoTe2/boron nitride/graphene heterostructures through contact engineering, 2020, Nanotechnology
  • Gate-tunable van der Waals heterostructure based on semimetallic WTe2 and semiconducting MoTe2, 2021, Applied Physics Letters
  • Non-volatile programmable homogeneous lateral MoTe2 junction for multi-bit flash memory and high-performance optoelectronics, 2020, Nano Research
  • Mechanism and efficiency of photocatalytic triclosan degradation by TiO2/BiFeO3 nanomaterials, 2022, Water Science & Technology

Zhang frequently collaborates with other researchers, including Enxiu Wu, Yuan Xie, Xiao Hu, Jing Liu, and Shijie Wang, indicating a strong network in research related to advanced materials and electronic devices.

Best Publications

  • Detection of NO2 down to ppb levels using individual and multiple In2O3 nanowire devices

    Daihua Zhang;Zuqin Liu;Chao Li;Tao Tang

  • Transparent, conductive, and flexible carbon nanotube films and their application in organic light-emitting diodes.

    Daihua Zhang;Koungmin Ryu;Xiaolei Liu;Evgueni Polikarpov

  • In2O3 nanowires as chemical sensors

    Chao Li;Daihua Zhang;Xiaolei Liu;Song Han

  • Laser Ablation Synthesis and Electron Transport Studies of Tin Oxide Nanowires

    Z. Liu;D. Zhang;S. Han;C. Li

  • Diameter-controlled Growth of Single-crystalline In2O3 Nanowires and Their Electronic Properties

    C. Li;D. Zhang;S. Han;X. Liu

  • Magnetite (Fe3O4) Core−Shell Nanowires: Synthesis and Magnetoresistance

    Daihua Zhang;Zuqin Liu;Song Han;Chao Li

  • Mechanical and Electrical Anisotropy of Few-Layer Black Phosphorus

    Jin Tao;Wanfu Shen;Sen Wu;Lu Liu

  • Single Crystalline Magnetite Nanotubes

    Zuqin Liu;Daihua Zhang;Song Han;Chao Li

  • Electronic Transport Studies of Single-Crystalline In2O3 Nanowires

    D. Zhang;C. Li;S. Han;X. Liu

  • Electronic transport studies of single-crystalline In2O3 nanowires

    Daihua Zhang;Chao Li;Song Han;Xiaolei Liu

  • Doping dependent NH3 sensing of indium oxide nanowires

    Daihua Zhang;Chao Li;Xiaolei Liu;Song Han

  • Fabrication approach for molecular memory arrays

    Chao Li;Daihua Zhang;Xiaolei Liu;Song Han

  • Photoconduction studies on GaN nanowire transistors under UV and polarized UV illumination

    Song Han;Wu Jin;Daihua Zhang;Tao Tang

  • Multilevel memory based on molecular devices

    Chao Li;Wendy Fan;Bo Lei;Daihua Zhang

  • Ultrasensitive and Fully Reversible NO2 Gas Sensing Based on p-Type MoTe2 under Ultraviolet Illumination

    Enxiu Wu;Yuan Xie;Bo Yuan;Hao Zhang

  • Transition Metal Oxide Core-Shell Nanowires: Generic Synthesis and Transport Studies

    Song Han;Chao Li;Zuqin Liu;Bo Lei

  • Ultraviolet photodetection properties of indium oxide nanowires

    D. Zhang;C. Li;S. Han;X. Liu

  • Highly sensitive MoTe 2 chemical sensor with fast recovery rate through gate biasing

    Zhihong Feng;Yuan Xie;Jiancui Chen;Yuanyuan Yu

  • Data Storage Studies on Nanowire Transistors with Self-Assembled Porphyrin Molecules

    Chao Li;James Ly;Bo Lei;Wendy Fan

  • Surface Treatment and Doping Dependence of In2O3 Nanowires as Ammonia Sensors

    Chao Li;Daihua Zhang;Bo Lei;Song Han

  • Dynamically controllable polarity modulation of MoTe2 field-effect transistors through ultraviolet light and electrostatic activation.

    Enxiu Wu;Yuan Xie;Jing Zhang;Hao Zhang

  • Detection of Volatile Organic Compounds by Self-assembled Monolayer Coated Sensor Array with Concentration-independent Fingerprints.

    Ye Chang;Ning Tang;Hemi Qu;Jing Liu

  • Synthesis and characterization of single-crystal indium nitride nanowires

    Tao Tang;Song Han;Wu Jin;Xiaolei Liu

  • Nanowire transistors with ferroelectric gate dielectrics: Enhanced performance and memory effects

    Bo Lei;Chao Li;Daihua Zhang;Q. F. Zhou

Frequent Co-Authors

Chongwu Zhou
Chongwu Zhou University of Southern California
Jie Han
Jie Han Ames Research Center
Yan Chen
Yan Chen Tianjin University
Yiyu Feng
Yiyu Feng Tianjin University
Kang L. Wang
Kang L. Wang University of California, Los Angeles
Lin Zhang
Lin Zhang Tianjin University
Wei Feng
Wei Feng Tianjin University
J. Joshua Yang
J. Joshua Yang University of Southern California
Wenzhong Bao
Wenzhong Bao Fudan University
Wei Ji
Wei Ji Renmin University of China

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