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Materials Science

D-Index
57
Citations
17251
World Ranking
7849
National Ranking
2276

Overview

Ting Lei is affiliated with Peking University in China and has contributed extensively to the fields of engineering and materials science. Their research output demonstrates a focus on electrical and electronic engineering as well as polymers and plastics, with significant work in biomedical engineering and materials chemistry. Atmospheric science also represents a part of their interdisciplinary approach.

Their research primarily addresses topics including:

  • Conducting polymers and applications
  • Organic electronics and photovoltaics
  • Advanced sensor and energy harvesting materials
  • Perovskite materials and applications
  • Atmospheric chemistry and aerosols
  • Advanced memory and neural computing
  • Air quality and health impacts

Ting Lei's publications have appeared repeatedly in several key scientific journals and venues. The most frequent venues for their work are:

  • Nature Communications
  • Advanced Functional Materials
  • SSRN Electronic Journal
  • Nature
  • Advanced Materials

Among recent papers, notable ones include:

  • "Anion-π interactions suppress phase impurities in FAPbI3 solar cells" (2023), published in Nature
  • "A universal interface for plug-and-play assembly of stretchable devices" (2023), published in Nature
  • "Progress of the key materials for organic solar cells" (2020), published in Science China Chemistry
  • "A thermally activated and highly miscible dopant for n-type organic thermoelectrics" (2020), published in Nature Communications
  • "Fully stretchable active-matrix organic light-emitting electrochemical cell array" (2020), published in Nature Communications

Collaborative work features frequent co-authorship with peers including Peiyun Li, Xinyu Deng, Maofa Ge, Xiran Pan, and Weigang Wang. These collaborations reflect sustained partnerships that align with Lei's primary research interests.

Best Publications

  • Skin electronics from scalable fabrication of an intrinsically stretchable transistor array.

    Sihong Wang;Jie Xu;Weichen Wang;Ging-Ji Nathan Wang

  • Robust and conductive two-dimensional metal−organic frameworks with exceptionally high volumetric and areal capacitance

    Dawei Feng;Ting Lei;Maria R. Lukatskaya;Jihye Park

  • Soft and elastic hydrogel-based microelectronics for localized low-voltage neuromodulation

    Yuxin Liu;Jia Liu;Shucheng Chen;Ting Lei

  • Influence of alkyl chain branching positions on the hole mobilities of polymer thin-film transistors.

    Ting Lei;Jin-Hu Dou;Jian Pei

  • Quadruple H-Bonding Cross-Linked Supramolecular Polymeric Materials as Substrates for Stretchable, Antitearing, and Self-Healable Thin Film Electrodes

    Xuzhou Yan;Zhiyuan Liu;Qiuhong Zhang;Qiuhong Zhang;Jeffrey Lopez

  • High-performance air-stable organic field-effect transistors: isoindigo-based conjugated polymers.

    Ting Lei;Yue Cao;Yunlong Fan;Chen-Jiang Liu

  • Roles of Flexible Chains in Organic Semiconducting Materials

    Ting Lei;Jie-Yu Wang;Jian Pei

  • Surface Fluorination of Reactive Battery Anode Materials for Enhanced Stability.

    Jie Zhao;Lei Liao;Feifei Shi;Ting Lei

  • Biocompatible and totally disintegrable semiconducting polymer for ultrathin and ultralightweight transient electronics

    Ting Lei;Ming Guan;Jia Liu;Hung-Cheng Lin

  • Design, synthesis, and structure-property relationships of isoindigo-based conjugated polymers.

    Ting Lei;Jie-Yu Wang;Jian Pei

  • "Conformation locked" strong electron-deficient poly(p-phenylene vinylene) derivatives for ambient-stable n-type field-effect transistors: synthesis, properties, and effects of fluorine substitution position.

    Ting Lei;Xin Xia;Jie-Yu Wang;Chen-Jiang Liu

  • Highly stable organic polymer field-effect transistor sensor for selective detection in the marine environment

    Oren Knopfmacher;Mallory L. Hammock;Anthony L. Appleton;Gregor Schwartz

  • Ambipolar Polymer Field-Effect Transistors Based on Fluorinated Isoindigo: High Performance and Improved Ambient Stability

    Ting Lei;Jin-Hu Dou;Zhi-Jun Ma;Cong-Hui Yao

  • Electron-Deficient Poly(p-phenylene vinylene) Provides Electron Mobility over 1 cm2 V–1 s–1 under Ambient Conditions

    Ting Lei;Jin-Hu Dou;Xiao-Yu Cao;Jie-Yu Wang

  • Stretchable temperature-sensing circuits with strain suppression based on carbon nanotube transistors

    Chenxin Zhu;Alex Chortos;Yue Wang;Raphael Pfattner

  • Systematic Investigation of Isoindigo-Based Polymeric Field-Effect Transistors: Design Strategy and Impact of Polymer Symmetry and Backbone Curvature

    Ting Lei;Yue Cao;Xu Zhou;Yang Peng

  • Ultratransparent and stretchable graphene electrodes

    Nan Liu;Alex Chortos;Ting Lei;Lihua Jin

  • Mechanically Durable and Highly Stretchable Transistors Employing Carbon Nanotube Semiconductor and Electrodes

    Alex Chortos;Ghada I. Koleilat;Raphael Pfattner;Desheng Kong

  • Azaborine Compounds for Organic Field‐Effect Transistors: Efficient Synthesis, Remarkable Stability, and BN Dipole Interactions

    Xiao-Ye Wang;Hao-Ran Lin;Ting Lei;Dong-Chu Yang

  • Fine-Tuning of Crystal Packing and Charge Transport Properties of BDOPV Derivatives through Fluorine Substitution

    Jin-Hu Dou;Yu-Qing Zheng;Ze-Fan Yao;Zhi-Ao Yu

Frequent Co-Authors

Jian Pei
Jian Pei Peking University
Zhenan Bao
Zhenan Bao Stanford University
Zhaoxin Wu
Zhaoxin Wu Xi'an Jiaotong University
Jie-Yu Wang
Jie-Yu Wang Peking University
Kwang-Ting Cheng
Kwang-Ting Cheng Hong Kong University of Science and Technology
Bo Jiao
Bo Jiao Xi'an Jiaotong University
Raymond G. Beausoleil
Raymond G. Beausoleil Hewlett-Packard (United States)
Madhavan Swaminathan
Madhavan Swaminathan Pennsylvania State University
Yong Cao
Yong Cao South China University of Technology
Alex K.-Y. Jen
Alex K.-Y. Jen City University of Hong Kong

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