关注
Buxuan Li
Buxuan Li
MIT, previously at UC Berkeley, Tsinghua Univeristy
在 mit.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Laser‐induced molybdenum carbide–graphene composites for 3D foldable paper electronics
X Zang, C Shen, Y Chu, B Li, M Wei, J Zhong, M Sanghadasa, L Lin
Advanced Materials 30 (26), 1800062, 2018
2012018
Self‐assembly of large‐area 2D polycrystalline transition metal carbides for hydrogen electrocatalysis
X Zang, W Chen, X Zou, JN Hohman, L Yang, B Li, M Wei, C Zhu, J Liang, ...
Advanced materials 30 (50), 1805188, 2018
1182018
Titanium disulfide coated carbon nanotube hybrid electrodes enable high energy density symmetric pseudocapacitors
X Zang, C Shen, E Kao, R Warren, R Zhang, KS Teh, J Zhong, M Wei, B Li, ...
Advanced materials 30 (5), 1704754, 2018
1132018
Laser-sculptured ultrathin transition metal carbide layers for energy storage and energy harvesting applications
X Zang, C Jian, T Zhu, Z Fan, W Wang, M Wei, B Li, M Follmar Diaz, ...
Nature communications 10 (1), 3112, 2019
1102019
Spreading and breakup of nanodroplet impinging on surface
BX Li, XH Li, M Chen
Physics of Fluids 29 (1), 2017
692017
Dynamic intermolecular interactions through hydrogen bonding of water promote heat conduction in hydrogels
J Zhou, S Lin, H Zeng, J Liu, B Li, Y Xu, X Zhao, G Chen
Materials Horizons 7 (11), 2936-2943, 2020
472020
An experimental study on the cavitation of water with dissolved gases
B Li, Y Gu, M Chen
Experiments in Fluids 58, 1-9, 2017
472017
An experimental study on the cavitation of water with effects of SiO2 nanoparticles
Y Gu, B Li, M Chen
Experimental Thermal and Fluid Science 79, 195-201, 2016
442016
Cavitation inception of water with solid nanoparticles: A molecular dynamics study
B Li, Y Gu, M Chen
Ultrasonics sonochemistry 51, 120-128, 2019
322019
Measuring Graphene Adhesion on Silicon Substrate by Single and Dual Nanoparticle‐Loaded Blister
X Gao, X Yu, B Li, S Fan, C Li
Advanced Materials Interfaces 4 (9), 1601023, 2017
192017
The importance of localized modes spectral contribution to thermal conductivity in amorphous polymers
B Li, F DeAngelis, G Chen, A Henry
Communications Physics 5 (1), 323, 2022
14*2022
Polymer grafted nanoparticle composites with enhanced thermal and mechanical properties
JM Kubiak, B Li, M Suazo, RJ Macfarlane
ACS Applied Materials & Interfaces 14 (18), 21535-21543, 2022
112022
A molecular dynamics simulation study on the cavitation inception of water with dissolved gases
Y Zhou, B Li, Y Gu, M Chen
Molecular Physics 117 (14), 1894-1902, 2019
112019
Flexible Harsh environment micro supercapacitors using direct-write 2D transition metal carbides
M Wei, B Li, X Zang, W Chen, Y Chu, M Sanghadasa, L Lin
2017 19th International Conference on Solid-State Sensors, Actuators and …, 2017
52017
Hydrogen Electrocatalysis: Self‐Assembly of Large‐Area 2D Polycrystalline Transition Metal Carbides for Hydrogen Electrocatalysis (Adv. Mater. 50/2018)
X Zang, W Chen, X Zou, JN Hohman, L Yang, B Li, M Wei, C Zhu, J Liang, ...
Advanced Materials 30 (50), 1870385, 2018
42018
Paper Electronics: Laser‐Induced Molybdenum Carbide–Graphene Composites for 3D Foldable Paper Electronics (Adv. Mater. 26/2018)
X Zang, C Shen, Y Chu, B Li, M Wei, J Zhong, M Sanghadasa, L Lin
Advanced Materials 30 (26), 1870192, 2018
42018
Ultrasensitive Acoustic Detection Using an Enlarged Fabry–Perot Cavity with a Graphene Diaphragm
Y Liu, C Li, B Li, S Lu, S Fan, S Dong, Z Wan, M Shen
ACS Applied Materials & Interfaces 15 (44), 51390-51398, 2023
22023
Reversible two-way tuning of thermal conductivity in an end-linked star-shaped thermoset
CM Hartquist, B Li, JH Zhang, Z Yu, G Lv, J Shin, SV Boriskina, G Chen, ...
Nature communications 15 (1), 5590, 2024
12024
Thermal transport in a 2D amorphous material
Y Wang, X Zhang, W Yan, N Liang, H He, X Tao, A Li, F Yang, B Li, TH Liu, ...
arXiv preprint arXiv:2402.13471, 2024
12024
Foldable paper electronics by direct-write laser patterning
B Li, Y Chu, X Zang, M Wei, H Liu, Y Liu, Y Ma, C Li, X Wang, L Lin
2017 19th International Conference on Solid-State Sensors, Actuators and …, 2017
12017
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