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mingqiang huang
mingqiang huang
在 siat.ac.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Broadband black-phosphorus photodetectors with high responsivity
M Huang, M Wang, C Chen, Z Ma, X Li, J Han, Y Wu
Adv. Mater 28 (18), 3481-3485, 2016
4492016
Multifunctional high-performance van der Waals heterostructures
M Huang, S Li, Z Zhang, X Xiong, X Li, Y Wu
Nature nanotechnology 12 (12), 1148-1154, 2017
3292017
Performance Potential and Limit of MoS2 Transistors
X Li, L Yang, M Si, S Li, M Huang, P Ye, Y Wu
Advanced Materials 27 (9), 1547-1552, 2015
1102015
A transverse tunnelling field-effect transistor made from a van der Waals heterostructure
X Xiong, M Huang, B Hu, X Li, F Liu, S Li, M Tian, T Li, J Song, Y Wu
Nature Electronics 3 (2), 106-112, 2020
832020
Flexible electronic synapse enabled by ferroelectric field effect transistor for robust neuromorphic computing
G Zhong, M Zi, C Ren, Q Xiao, M Tang, L Wei, F An, S Xie, J Wang, ...
Applied Physics Letters 117 (9), 2020
622020
Design and implementation of ternary logic integrated circuits by using novel two-dimensional materials
M Huang, X Wang, G Zhao, P Coquet, B Tay
Applied Sciences 9 (20), 4212, 2019
442019
AdderNet and its minimalist hardware design for energy-efficient artificial intelligence
Y Wang, M Huang, K Han, H Chen, W Zhang, C Xu, D Tao
arXiv preprint arXiv:2101.10015, 2021
432021
High performance black phosphorus electronic and photonic devices with HfLaO dielectric
X Xiong, X Li, M Huang, T Li, T Gao, Y Wu
IEEE Electron Device Letters 39 (1), 127-130, 2017
362017
High field transport of high performance black phosphorus transistors
T Li, Z Zhang, X Li, M Huang, S Li, S Li, Y Wu
Applied Physics Letters 110 (16), 2017
332017
Optimized transport properties in lithium doped black phosphorus transistors
T Gao, X Li, X Xiong, M Huang, T Li, Y Wu
IEEE Electron Device Letters 39 (5), 769-772, 2018
292018
Hardware‐Friendly Stochastic and Adaptive Learning in Memristor Convolutional Neural Networks
W Zhang, L Pan, X Yan, G Zhao, H Chen, X Wang, BK Tay, G Zhong, J Li, ...
Advanced Intelligent Systems 3 (9), 2100041, 2021
212021
Black phosphorus radio frequency electronics at cryogenic temperatures
T Li, M Tian, S Li, M Huang, X Xiong, Q Hu, S Li, X Li, Y Wu
Advanced Electronic Materials 4 (8), 1800138, 2018
162018
A high performance multi-bit-width booth vector systolic accelerator for NAS optimized deep learning neural networks
M Huang, Y Liu, C Man, K Li, Q Cheng, W Mao, H Yu
IEEE Transactions on Circuits and Systems I: Regular Papers 69 (9), 3619-3631, 2022
142022
Global-gate controlled one-transistor one-digital-memristor structure for low-bit neural network
M Huang, G Zhao, X Wang, W Zhang, P Coquet, BK Tay, G Zhong, J Li
IEEE Electron Device Letters 42 (1), 106-109, 2020
132020
Ni foam assisted synthesis of high quality hexagonal boron nitride with large domain size and controllable thickness
H Ying, X Li, D Li, M Huang, W Wan, Q Yao, X Chen, Z Wang, Y Wu, ...
2D Materials 5 (2), 025020, 2018
132018
Reconfigurable artificial synapse based on ambipolar floating gate memory
C Yao, G Wu, M Huang, W Wang, C Zhang, J Wu, H Liu, B Zheng, J Yi, ...
ACS Applied Materials & Interfaces 15 (19), 23573-23582, 2023
122023
Winograd algorithm for addernet
W Li, H Chen, M Huang, X Chen, C Xu, Y Wang
International Conference on Machine Learning, 6307-6315, 2021
122021
An Integer-Only and Group-Vector Systolic Accelerator for Efficiently Mapping Vision Transformer on Edge
M Huang, J Luo, C Ding, Z Wei, S Huang, H Yu
IEEE Transactions on Circuits and Systems I: Regular Papers, 2023
102023
Performance Optimization of Atomic Layer Deposited HfOx Memristor by Annealing With Back-End-of-Line Compatibility
H Chen, L Li, J Wang, G Zhao, Y Li, J Lan, BK Tay, G Zhong, J Li, ...
IEEE Electron Device Letters 43 (7), 1141-1144, 2022
102022
A precision-scalable energy-efficient bit-split-and-combination vector systolic accelerator for NAS-optimized DNNs on edge
K Li, J Zhou, Y Wang, J Luo, Z Yang, S Yang, W Mao, M Huang, H Yu
2022 Design, Automation & Test in Europe Conference & Exhibition (DATE), 730-735, 2022
102022
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