Flexible PVDF based piezoelectric nanogenerators L Lu, W Ding, J Liu, B Yang Nano Energy 78, 105251, 2020 | 478 | 2020 |
Electromagnetic energy harvesting from vibrations of multiple frequencies B Yang, C Lee, W Xiang, J Xie, JH He, RK Kotlanka, SP Low, H Feng Journal of micromechanics and microengineering 19 (3), 035001, 2009 | 472 | 2009 |
Self-powered and self-functional cotton sock using piezoelectric and triboelectric hybrid mechanism for healthcare and sports monitoring M Zhu, Q Shi, T He, Z Yi, Y Ma, B Yang, T Chen, C Lee ACS nano 13 (2), 1940-1952, 2019 | 424 | 2019 |
Flexible noncontact sensing for human–machine interaction L Lu, C Jiang, G Hu, J Liu, B Yang Advanced Materials 33 (16), 2100218, 2021 | 261 | 2021 |
A flexible triboelectric-piezoelectric hybrid nanogenerator based on P (VDF-TrFE) nanofibers and PDMS/MWCNT for wearable devices X Wang, B Yang, J Liu, Y Zhu, C Yang, Q He Scientific reports 6 (1), 36409, 2016 | 242 | 2016 |
Making use of nanoenergy from human–Nanogenerator and self-powered sensor enabled sustainable wireless IoT sensory systems M Zhu, Z Yi, B Yang, C Lee Nano Today 36, 101016, 2021 | 210 | 2021 |
A flexible and biocompatible triboelectric nanogenerator with tunable internal resistance for powering wearable devices Y Zhu, B Yang, J Liu, X Wang, L Wang, X Chen, C Yang Scientific reports 6 (1), 22233, 2016 | 161 | 2016 |
Direct powering a real cardiac pacemaker by natural energy of a heartbeat N Li, Z Yi, Y Ma, F Xie, Y Huang, Y Tian, X Dong, Y Liu, X Shao, Y Li, L Jin, ... ACS nano 13 (3), 2822-2830, 2019 | 152 | 2019 |
Piezoelectric dynamics of arterial pulse for wearable continuous blood pressure monitoring Z Yi, Z Liu, W Li, T Ruan, X Chen, J Liu, B Yang, W Zhang Advanced Materials 34 (16), 2110291, 2022 | 141 | 2022 |
Graphene oxide doped conducting polymer nanocomposite film for electrode-tissue interface HC Tian, JQ Liu, DX Wei, XY Kang, C Zhang, JC Du, B Yang, X Chen, ... Biomaterials 35 (7), 2120-2129, 2014 | 132 | 2014 |
A MEMS rotary comb mechanism for harvesting the kinetic energy of planar vibrations B Yang, C Lee, RK Kotlanka, J Xie, SP Lim Journal of Micromechanics and Microengineering 20 (6), 065017, 2010 | 126 | 2010 |
Flexible Single-Electrode Triboelectric Nanogenerator and Body Moving Sensor Based on Porous Na2CO3/Polydimethylsiloxane Film C Cui, X Wang, Z Yi, B Yang, X Wang, X Chen, J Liu, C Yang ACS applied materials & interfaces 10 (4), 3652-3659, 2018 | 115 | 2018 |
PDMS-based low cost flexible dry electrode for long-term EEG measurement LF Wang, JQ Liu, B Yang, CS Yang IEEE Sensors Journal 12 (9), 2898-2904, 2012 | 110 | 2012 |
Effect of interdigital electrode gap on the performance of SnO2-modified MoS2 capacitive humidity sensor Y Zhao, B Yang, J Liu Sensors and Actuators B: Chemical 271, 256-263, 2018 | 108 | 2018 |
Development of high performance piezoelectric d33 mode MEMS vibration energy harvester based on PMN-PT single crystal thick film G Tang, B Yang, J Liu, B Xu, H Zhu, C Yang Sensors and Actuators A: Physical 205, 150-155, 2014 | 91 | 2014 |
Non-resonant electromagnetic wideband energy harvesting mechanism for low frequency vibrations B Yang, C Lee Microsystem Technologies 16, 961-966, 2010 | 90 | 2010 |
A transparent and biocompatible single-friction-surface triboelectric and piezoelectric generator and body movement sensor X Wang, B Yang, J Liu, C Yang Journal of Materials Chemistry A 5 (3), 1176-1183, 2017 | 89 | 2017 |
Flexible multifunctional graphite nanosheet/electrospun-polyamide 66 nanocomposite sensor for ECG, strain, temperature and gas measurements L Lu, B Yang, J Liu Chemical Engineering Journal 400, 125928, 2020 | 87 | 2020 |
Theoretical comparison of the energy harvesting capability among various electrostatic mechanisms from structure aspect C Lee, YM Lim, B Yang, RK Kotlanka, CH Heng, JH He, M Tang, J Xie, ... Sensors and Actuators A: Physical 156 (1), 208-216, 2009 | 84 | 2009 |
Flexible polyimide-based hybrid opto-electric neural interface with 16 channels of micro-LEDs and electrodes B Ji, Z Guo, M Wang, B Yang, X Wang, W Li, J Liu Microsystems & nanoengineering 4 (1), 27, 2018 | 81 | 2018 |