1 |
A compact model for the zigzag triboelectric nanogenerator energy harvester Refaei A, Seleem M, Tharwat A, Mostafa H International Journal of Energy Research, 45(2), 1645, 2021 |
2 |
An electrostatic discharge based needle-to-needle booster for dramatic performance enhancement of triboelectric nanogenerators Zhai C, Chou XJ, He J, Song LL, Zhang ZX, Wen T, Tian ZM, Chen X, Zhang WD, Niu ZC, Xue CY Applied Energy, 231, 1346, 2018 |
3 |
Highly-enhanced triboelectric nanogenerators based on zinc-oxide nanoripples acting as a triboelectric layer Jeon YP, Park JH, Kim TW Applied Surface Science, 445, 50, 2018 |
4 |
High-performance and cost-effective triboelectric nanogenerators by sandpaper-assisted micropatterned polytetrafluoroethylene Mule AR, Dudem B, Yu JS Energy, 165, 677, 2018 |
5 |
Piezoelectric and triboelectric nanogenerators: Trends and impacts Askari H, Khajepour A, Khamesee MB, Saadatnia Z, Wang ZL Nano Today, 22, 10, 2018 |
6 |
Lightweight Triboelectric Nanogenerator for Energy Harvesting and Sensing Tiny Mechanical Motion Li T, Xu Y, Willander M, Xing F, Cao X, Wang N, Wang ZL Advanced Functional Materials, 26(24), 4370, 2016 |
7 |
Triboelectric Nanogenerator Accelerates Highly Efficient Nonviral Direct Conversion and In Vivo Reprogramming of Fibroblasts to Functional Neuronal Cells Jin Y, Seo J, Lee JS, Shin S, Park HJ, Min S, Cheong E, Lee T, Cho SW Advanced Materials, 28(34), 7365, 2016 |
8 |
Self-Powered Trace Memorization by Conjunction of Contact-Electrification and Ferroelectricity Chen XY, Iwamoto M, Shi ZM, Zhang LM, Wang ZL Advanced Functional Materials, 25(5), 739, 2015 |
9 |
A Flexible, Stretchable and Shape-Adaptive Approach for Versatile Energy Conversion and Self-Powered Biomedical Monitoring Yang PK, Lin L, Yi F, Li XH, Pradel KC, Zi YL, Wu CI, He JH, Zhang Y, Wang ZL Advanced Materials, 27(25), 3817, 2015 |
10 |
Performance Enhancement of Electronic and Energy Devices via Block Copolymer Self-Assembly Yoo HG, Byun M, Jeong CK, Lee KJ Advanced Materials, 27(27), 3982, 2015 |