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Materials Science

D-Index
65
Citations
17297
World Ranking
5567
National Ranking
63

Overview

Chih-I Wu is affiliated with National Taiwan University in Taiwan and has an extensive research portfolio primarily focused on engineering and materials science. Their body of work spans several subfields including electrical and electronic engineering, materials chemistry, electronic, optical and magnetic materials, renewable energy, sustainability and the environment, as well as biomedical engineering.

The main topics covered in Wu's research include:

  • Perovskite Materials and Applications
  • 2D Materials and Applications
  • Advanced Memory and Neural Computing
  • Graphene research and applications
  • Supercapacitor Materials and Fabrication
  • Ferroelectric and Negative Capacitance Devices
  • Conducting polymers and applications

Frequent collaborators in their work include:

  • I-Chih Ni
  • I-Chun Cheng
  • Jian-Zhang Chen
  • Pi-Tai Chou
  • Cheng-Che Hsu

Wu's publications have appeared regularly in multiple venues across the fields of science and engineering. Among these, the most frequent include:

  • SSRN Electronic Journal
  • IEEE Journal of Solid-State Circuits
  • Advanced Science
  • Advanced Materials Interfaces
  • 2021 IEEE International Electron Devices Meeting (IEDM)

Significant papers authored or coauthored by Wu are as follows:

  • Ultralow contact resistance between semimetal and monolayer semiconductors, 2021, Nature
  • Boosting photocatalytic CO2 reduction in a ZnS/ZnIn2S4 heterostructure through strain-induced direct Z-scheme and a mechanistic study of molecular CO2 interaction thereon, 2021, Nano Energy
  • Transparent and Flexible Inorganic Perovskite Photonic Artificial Synapses with Dual-Mode Operation, 2020, Advanced Functional Materials
  • A 28nm 1Mb Time-Domain Computing-in-Memory 6T-SRAM Macro with a 6.6ns Latency, 1241GOPS and 37.01TOPS/W for 8b-MAC Operations for Edge-AI Devices, 2022, 2022 IEEE International Solid-State Circuits Conference (ISSCC)
  • Highly Emissive Dinuclear Platinum(III) Complexes, 2020, Journal of the American Chemical Society

Best Publications

  • Monolayer MoS2 Heterojunction Solar Cells

    Meng-Lin Tsai;Meng-Lin Tsai;Sheng-Han Su;Sheng-Han Su;Jan-Kai Chang;Dung-Sheng Tsai

  • Ultralow contact resistance between semimetal and monolayer semiconductors.

    Pin-Chun Shen;Cong Su;Yuxuan Lin;Yuxuan Lin;Ang-Sheng Chou;Ang-Sheng Chou

  • Monolayer MoSe2 grown by chemical vapor deposition for fast photodetection.

    Yung Huang Chang;Wenjing Zhang;Yihan Zhu;Yu Han

  • Highly Efficient Organic Blue Electrophosphorescent Devices Based on 3,6‐Bis(triphenylsilyl)carbazole as the Host Material

    Ming-Han Tsai;Hao-Wu Lin;Hai-Ching Su;Tung-Huei Ke

  • Carbon-doped SnS2 nanostructure as a high-efficiency solar fuel catalyst under visible light.

    Indrajit Shown;Satyanarayana Samireddi;Satyanarayana Samireddi;Yu Chung Chang;Raghunath Putikam

  • Highly Efficient Visible Light Photocatalytic Reduction of CO2 to Hydrocarbon Fuels by Cu-Nanoparticle Decorated Graphene Oxide

    Indrajit Shown;Hsin-Cheng Hsu;Hsin-Cheng Hsu;Yu-Chung Chang;Chang-Hui Lin

  • An Exciplex Forming Host for Highly Efficient Blue Organic Light Emitting Diodes with Low Driving Voltage

    Jeong-Hwan Lee;Shuo-Hsien Cheng;Seung-Jun Yoo;Hyun Shin

  • Boosting Photocatalytic CO2 Reduction in a ZnS/ZnIn2S4 Heterostructure Through Strain-induced Direct Z-scheme and a Mechanistic Study of Molecular CO2 Interaction Thereon

    Unknown

  • Method of depositing cvd and ald films onto low-dielectric-constant dielectrics

    Jihperng Leu;Chih-I Wu;Ying Zhou;Grant M. Kloster

  • Energy level offset at organic semiconductor heterojunctions

    A. Rajagopal;C. I. Wu;A. Kahn

  • A Flexible, Stretchable and Shape‐Adaptive Approach for Versatile Energy Conversion and Self‐Powered Biomedical Monitoring

    Po Kang Yang;Po Kang Yang;Po Kang Yang;Long Lin;Fang Yi;Fang Yi;Xiuhan Li

  • Single-step deposition of high-mobility graphene at reduced temperatures

    D. A. Boyd;Wei-Hsiang Lin;C.-C. Hsu;M. L. Teague

  • A Direct and Polymer-Free Method for Transferring Graphene Grown by Chemical Vapor Deposition to Any Substrate

    Wei-Hsiang Lin;Ting-Hui Chen;Jan-Kai Chang;Jieh-I Taur

  • 13% Efficiency Hybrid Organic/Silicon-Nanowire Heterojunction Solar Cell via Interface Engineering

    Pei-Chen Yu;Chia Ying Tsai;Jan Kai Chang;Chih Chung Lai

  • Electronic structures and electron-injection mechanisms of cesium-carbonate-incorporated cathode structures for organic light-emitting devices

    Chih-I Wu;Chan-Tin Lin;Yu-Hung Chen;Mei-Hsin Chen

  • Using n- and p-Type Bi2Te3 Topological Insulator Nanoparticles To Enable Controlled Femtosecond Mode-Locking of Fiber Lasers

    Yung-Hsiang Lin;Sheng-Fong Lin;Yu-Chieh Chi;Chung-Lun Wu

  • Hydroxynaphthyridine-derived group III metal chelates: wide band gap and deep blue analogues of green Alq3 (tris(8-hydroxyquinolate)aluminum) and their versatile applications for organic light-emitting diodes.

    Szu-Hung Liao;Jin-Ruei Shiu;Shun-Wei Liu;Shi-Jay Yeh

  • Sealing porous dielectrics with silane coupling reagents

    Grant Kloster;Chih-I Wu;Xiaorong Morrow

  • Probing surface band bending of surface-engineered metal oxide nanowires.

    Cheng-Ying Chen;Cheng-Ying Chen;Jose Ramon Duran Retamal;I-Wen Wu;Der-Hsien Lien

  • Electron-hole interaction energy in the organic molecular semiconductor PTCDA

    C. I. Wu;Y. Hirose;Y. Hirose;H. Sirringhaus;Antoine Kahn

  • GaN (0001)-(1×1) surfaces: Composition and electronic properties

    C. I. Wu;A. Kahn;N. Taskar;D. Dorman

Frequent Co-Authors

Gong-Ru Lin
Gong-Ru Lin National Taiwan University
Kuei-Hsien Chen
Kuei-Hsien Chen Academia Sinica
Ken-Tsung Wong
Ken-Tsung Wong National Taiwan University
Yu-Chieh Chi
Yu-Chieh Chi National Taiwan University
Chung-Chih Wu
Chung-Chih Wu National Taiwan University
Antoine Kahn
Antoine Kahn Princeton University
Li-Chyong Chen
Li-Chyong Chen National Taiwan University
Hao-Wu Lin
Hao-Wu Lin National Tsing Hua University
Jang-Joo Kim
Jang-Joo Kim Seoul National University
Pi-Tai Chou
Pi-Tai Chou National Taiwan University

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