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Yizhou Zhang
Yizhou Zhang
Nanjing University of Information Science and Technology (NUIST)
在 kaust.edu.sa 的电子邮件经过验证
标题
引用次数
引用次数
年份
MXenes stretch hydrogel sensor performance to new limits
YZ Zhang, KH Lee, DH Anjum, R Sougrat, Q Jiang, H Kim, HN Alshareef
Science advances 4 (6), eaat0098, 2018
9202018
Stretchable Ti3C2Tx MXene/Carbon Nanotube Composite Based Strain Sensor with Ultrahigh Sensitivity and Tunable Sensing Range
Y Cai, J Shen, G Ge, Y Zhang, W Jin, W Huang, J Shao, J Yang, X Dong
ACS nano 12 (1), 56-62, 2018
7752018
Printable transparent conductive films for flexible electronics
D Li, WY Lai, YZ Zhang, W Huang
Advanced materials 30 (10), 1704738, 2018
6402018
Flexible supercapacitors based on paper substrates: a new paradigm for low-cost energy storage
YZ Zhang, Y Wang, T Cheng, WY Lai, H Pang, W Huang
Chemical Society Reviews 44 (15), 5181-5199, 2015
6142015
Stretchable thin‐film electrodes for flexible electronics with high deformability and stretchability
T Cheng, Y Zhang, WY Lai, W Huang
Advanced Materials 27 (22), 3349-3376, 2015
4942015
Stretchable, transparent, and self‐patterned hydrogel‐based pressure sensor for human motions detection
G Ge, Y Zhang, J Shao, W Wang, W Si, W Huang, X Dong
Advanced Functional Materials 28 (32), 1802576, 2018
4882018
MXene hydrogels: fundamentals and applications
YZ Zhang, JK El-Demellawi, Q Jiang, G Ge, H Liang, K Lee, X Dong, ...
Chemical Society reviews 49, 7229-7251, 2020
4362020
Printed supercapacitors: materials, printing and applications
WH Yi-Zhou Zhang, Yang Wang, Tao Cheng, Lan-Qian Yao, Xiangchun Li, Wen-Yong Lai
Chemical Society Reviews, DOI:10.1039/C7CS00819H, 2019
420*2019
A MXene‐based wearable biosensor system for high‐performance in vitro perspiration analysis
Y Lei, W Zhao, Y Zhang, Q Jiang, JH He, AJ Baeumner, OS Wolfbeis, ...
Small 15 (19), 1901190, 2019
3522019
MXene printing and patterned coating for device applications
YZ Zhang, Y Wang, Q Jiang, JK El‐Demellawi, H Kim, HN Alshareef
Advanced Materials 32 (21), 1908486, 2020
3292020
Porous hollow Co 3 O 4 with rhombic dodecahedral structures for high-performance supercapacitors
YZ Zhang, Y Wang, YL Xie, T Cheng, WY Lai, H Pang, W Huang
Nanoscale 6 (23), 14354-14359, 2014
2912014
Flexible Pressure Sensor Based on rGO/Polyaniline Wrapped Sponge with Tunable Sensitivity for Human Motions Detection
WH Gang Ge, Yichen Cai, Yi-zhou Zhang, Jin-jun Shao, Xiao-Chen Dong
nanoscale, 2018
2832018
A simple approach to boost capacitance: flexible supercapacitors based on manganese oxides@ MOFs via chemically induced in situ self‐transformation
YZ Zhang, T Cheng, Y Wang, WY Lai, H Pang, W Huang
Advanced Materials 28 (26), 5242-5248, 2016
2472016
Inkjet Printing of δ-MnO2 Nanosheets for Flexible Solid-state Micro-supercapacitor
ATE Yang Wang, Yizhou Zhang, David Dubbink
nano energy, 2018
2422018
Conductive Hydrogel‐Based Electrodes and Electrolytes for Stretchable and Self‐Healable Supercapacitors
WH Tao Cheng, Yi‐Zhou Zhang, Shi Wang, Ya‐Li Chen, Si‐Ya Gao, Feng Wang, Wen ...
Advanced Functional Materials, 2021
2142021
High-performance free-standing PEDOT: PSS electrodes for flexible and transparent all-solid-state supercapacitors
T Cheng, YZ Zhang, JD Zhang, WY Lai, W Huang
Journal of Materials Chemistry A 4 (27), 10493-10499, 2016
2082016
Highly Stretchable and Autonomously Healable Epidermal Sensor Based on Multi-Functional Hydrogel Frameworks
XD Gang Ge,Wei Yuan,Wen Zhao,Yao Lu,Yizhou Zhang,Wenjun Wang,Peng Chen,Wei ...
Journal of Materials Chemistry A 7, 5949-5956, 2019
1952019
Lamellar K2Co3 (P2O7) 2· 2H2O nanocrystal whiskers: High-performance flexible all-solid-state asymmetric micro-supercapacitors via inkjet printing
H Pang, Y Zhang, WY Lai, Z Hu, W Huang
Nano Energy 15, 303-312, 2015
1922015
MXenes for energy harvesting
Y Wang, T Guo, Z Tian, K Bibi, YZ Zhang, HN Alshareef
Advanced Materials 34 (21), 2108560, 2022
1792022
Ti3C2Tx MXene-Activated Fast Gelation of Stretchable and Self-Healing Hydrogels: A Molecular Approach
G Ge, YZ Zhang, W Zhang, W Yuan, JK El-Demellawi, P Zhang, ...
ACS nano 15 (2), 2698-2706, 2021
1782021
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