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Lian‐Mao Peng

King University · US
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Area of research
Materials Chemistry · Biomedical Engineering
Research interest
Research interests include Carbon Nanotubes in Composites, Graphene research and applications, Nanowire Synthesis and Applications, and Electron and X-Ray Spectroscopy Techniques.
h-index
84
citations
33,639
works
686
NIH funding
primary concept
Physics
email

Recent publications

Wafer-Scale Heterogeneous Integration of High-Resolution Micro-LED Displays with Carbon Nanotube Thin-Film Transistors.
2026cited by 0position: contributordoi
Nanogate ferroelectric transistors with ultralow operation voltage of 0.6 V.
2026cited by 0position: contributordoi
Boosting carbon nanotube transistors through γ-ray irradiation.
2026cited by 0position: contributordoi
Quantum Phase Transition of a Molecular Radical Pair.
2026cited by 0position: contributordoi
Flexible amplifier with >100-dB voltage gain enabled by intrinsic gain singularity of carbon nanotube transistors.
2026cited by 0position: contributordoi
Critical point–based wireless sensors enabling tiny perturbation detection
Science Advances 2026cited by 0position: contributordoi
Characterization of Sub-6-GHz Carbon Nanotube Transistor-Based Resistive Mixer
IEEE Microwave and Wireless Technology Letters 2026cited by 0position: contributordoi
Flexible radio-frequency carbon nanotube transistors operating at frequencies above 100 GHz
Nature Electronics 2026cited by 0position: contributordoi
A Laboratory-Validated Predictive Design Approach for Carbon Nanotube 30/60 GHz MMIC Frequency Doubler
IEEE Microwave and Wireless Technology Letters 2026cited by 0position: contributordoi
Guidelines for accurate evaluation of photodetectors based on emerging semiconductor technologies
Nature Photonics 2025cited by 46position: middledoi
Guidelines for accurate evaluation of photodetectors based on emerging semiconductor technologies
Nature Photonics 2025cited by 46position: contributordoi
Low-power 2D gate-all-around logics via epitaxial monolithic 3D integration.
2025cited by 21position: contributordoi
Towards fab-compatible two-dimensional electronics
Nature Reviews Electrical Engineering 2025cited by 8position: contributordoi
High-performance ternary logic circuits and neural networks based on carbon nanotube source-gating transistors.
2025cited by 7position: contributordoi
Two-dimensional indium selenide wafers for integrated electronics.
2025cited by 6position: contributordoi
Self-Anchoring Process to Construct Highly-Aligned-Carbon Nanotube Transistors.
2025cited by 5position: contributordoi
Terahertz metal–oxide–semiconductor transistors based on aligned carbon nanotube arrays
Nature Electronics 2025cited by 5position: contributordoi
Carbon Nanotube Schottky Diode With Broadband Nonlinear Equivalent Circuit Model for Millimeter-Wave Frequency Multiplication
IEEE Microwave and Wireless Technology Letters 2025cited by 4position: contributordoi
Micro-LED Microdisplays Driven by Carbon Nanotube Active-Matrix Backplanes.
2025cited by 3position: contributordoi
Complementary Metal-Oxide-Semiconductor Integrated Circuits Based on Aligned Carbon Nanotubes.
2025cited by 2position: contributordoi
Reconfigurable Flexible Complementary Circuits Based on Polarity-Configurable Carbon Nanotube Transistors.
2025cited by 2position: contributordoi
Super-saturated complementary carbon nanotube transistors with intrinsic gain singularities.
2025cited by 2position: contributordoi
Regulation of Reaction Pathways in Coordinated Chains by Directional Mechanical Force.
2025cited by 2position: contributordoi
Probing light chirality and spin in two dimensions.
2025cited by 1position: contributordoi
Large-scale complementary carbon nanotube integrated circuits for harsh radiation environments.
2025cited by 1position: contributordoi
Realizing Boltzmann Switching Limit in Carbon Nanotube Transistors through Combating Intertube Electrostatic Coupling.
2025cited by 0position: contributordoi
Ultralow Power Cold-Fuse Memory Based on Metal-Oxide-CNT Structure.
2025cited by 0position: contributordoi
Advancing 2D CMOS electronics with high-performance p-type transistors.
2025cited by 0position: contributordoi
Contact-dominated localized electric-displacement-field-enhanced pressure sensing.
2025cited by 0position: contributordoi
Reconfigurable single-walled carbon nanotube ferroelectric field-effect transistors.
2025cited by 0position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 82 papers (2019–2026)Zhiyong Zhang · Shanxi Agricultural University33 papers (2019–2026) · 32 papers (2019–2026)Youfan Hu · Center for Life Sciences13 papers (2019–2026) · 11 papers (2020–2025)Chuanhong Jin · Zhejiang University11 papers (2020–2025)Chenguang Qiu · Peking University10 papers (2023–2026) · 10 papers (2019–2026) · 8 papers (2020–2025)Xuelei Liang · Minzu University of China8 papers (2024–2026)Yongfeng Wang · University of Electronic Science and Technology of China7 papers (2022–2026) · 7 papers (2021–2025)Li Ding · Peking University7 papers (2021–2025)Yajie Zhang · Peking University6 papers (2024–2026)Kai Wu · Beijing National Laboratory for Molecular Sciences6 papers (2024–2026)Fan Xia · Ministry of Ecology and Environment6 papers (2022–2026)Jingtao Lü · University of Science and Technology Beijing5 papers (2022–2025)Yu Cao · Chinese Academy of Sciences5 papers (2022–2025)Yaping Zang · Chinese Academy of Sciences4 papers (2025–2026)Shimin Hou · American Chemical Society4 papers (2025–2026)
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