(1) Ye, Guoyong; Liu, Hongzhong; Wang, Yang; Lei, Biao; Shi, Yongsheng; Yin, Lei; Lu, Bingheng; Ratiometric-Linearization-Based High-Precision Electronic Interpolator for Sinusoidal Optical Encoders, IEEE Transactions on Industrial Electronics, 2018, 65(10):8224-8231.
(2) Guoyong, Ye; Guobo, Zhao; Hongzhong, Liu; Bingheng, Lu; Precise Phase Demodulation Algorithm for Sinusoidal Encoders and Resolvers, IEEE Transactions on Industrial Electronics, 2020, 67(10):8778-8787.
(3) Yu, Haoyu; Liu, Hongzhong; Ye, Guoyong; Fan, Shanjin; Shi, Yongsheng; Yin, Lei; Chen, Bangdao; Jiang, Weitao; Transverse sensitivity suppression using multi-axis surface encoder with parasitic error compensation, Applied Physics Letters, 2017, 111(11):0-113507.
(4) Gu Tongkai; Wang Lanlan; Mao Mao; Han Jie; Li Rui; Zhang Yajun; Lei Biao; Jiang Weitao; Liu Hongzhong; Bilayer liquid-filled compound microlens arrays: A way to compensate aberration, Journal of Applied Physics, 2020, 128(16):163101.
(5) Zhang Yajun; Jiang Weitao; Gu Tongkai; Han Jie; Lei Biao; Wang Lanlan; Liu Hongzhong; Yin Lei; Chen Bangdao; Shi Yongsheng; Multidomain Oriented Particle Chains Based on Spatial Electric Field and Their Optical Application., Langmuir, 2020, 36(39):11546-11555.
(6) Guoyong Ye; Hongzhong Liu; Yaowen Ban; Yongsheng Shi; Lei Yin; Bingheng Lu; Development of a reflective optical encoder with submicron accuracy, Optics Communications, Optics Communications, 2018, 411:126-132.
(7) Guobo, Zhao; Guoyong, Ye; Hui, Liu; Biao, Lei; Xuan, Li; Weiliang, Han; Hongzhong, Liu; ElectronicInterpolation Interface Based on Linear Subdivision Method for Sinusoidal Optical Encoders, IEEE Sensors Journal, 2020, 20(7):3646-3654.
(8) Guoyong Ye; Yuhao Zhang; Wei Jiang; Siren Liu; Lei Qiu; Xiaojun Fan; Hongwen Xing; Pingping Wei; Bingheng Lu; Hongzhong Liu; Improving measurement accuracy of laser triangulation sensor via integrating a
diffraction grating, Optics and Lasers in Engineering, 2021, 143(0143-8166).
(9) Li, Xuan; Ye, Guoyong; Liu, Hongzhong; Ban, Yaowen; Shi, Yongsheng; Yin, Lei; Lu, Bingheng; A novel optical rotary encoder with eccentricity self-detection ability, Review of Scientific Instruments, 2017, 88(11):0-115005.
(10) Guoyong, Ye; Hui, Liu; Biao, Lei; Dong, Niu; Hongwen, Xing; Pingping, Wei; Bingheng, Lu; Hongzhong, Liu; Optimal design of a reflective diffraction grating scale with sine-trapezoidal groove for interferential optical encoders, Optics and Lasers in Engineering, 2020, 134:0-106196.
(11) Ye, Guoyong; Liu, Hongzhong; Li, Xuan; Yu, Haoyu; Lu, Bingheng; Development of a polar-coordinate optical encoder: principle and application, Optical Engineering, 2018, 57(1):0-014108.
(12) Ban, Yaowen; Ye, Guoyong; Liu, Hongzhong; Liu, Xiaohui; Lei, Biao; Zhao, Tingting; Shi, Yongsheng; Yin, Lei; Lu, Bingheng; Pre-stress-assisted nanoimprint lithography for fabricating high-density diffraction
gratings, Journal of Micromechanics and Microengineering, 2018, 28(10):0-105013.
(13) Guobo Zhao; Guoyong Ye; Zeze Wu; Hongwen Xing; Siren Liu; Xiaojun Fan; Yingjiang Li; Pingping Wei; Hongzhong Liu; On-line angle self-correction strategy based on a cobweb-structured grating scale, Measurement Science and Technology, 2021, 32(5).
(14) Ye, Guoyong; Xing, Hongwen; Liu, Hui; Li, Yingjiang; Lei, Biao; Niu, Dong; Li, Xuan; Lu, Bingheng; Liu, Hongzhong; Total error compensation of non-ideal signal parameters for Moire encoders, Sensors and Actuators
A: Physical, 2019, 298:0-111539.
(15) Guobo Zhao; Biao Lei; Guoyong Ye; Yaowen Ban; Xuan Li; Hui Liu; Hongzhong Liu; Improved Eccentricity Self-Detection Method Based on Least Square Algorithm for Polar Coordinate Encoder, IEEE Sensors Journal, 2021, 21(23):26902-26911.
(16) Ye, Guoyong; Wu, Zeze; Xu, Zhengchen; Wang, Yang; Shi, Yongsheng; Liu, Hongzhong; Development of a digital interpolation module for high-resolution sinusoidal encoders, Sensors and Actuators A: Physical, 2019, 285:501-510.
(17) Ye, Guoyong; Liu, Hongzhong; Yan, Jiawei; Ban, Yaowen; Fan, Shanjin; Shi, Yongsheng; Yin, Lei; Fabrication of high edge-definition steel-tape gratings for optical encoders, Review of Scientific Instruments, 2017, 88(10):0-105006.
(18) Niu, Dong; Jiang, Weitao; Ye, Guoyong; Lei, Biao; Luo, Feng; Liu, Hongzhong; Lu, Bingheng; Photothermally triggered soft robot with adaptive local deformations and versatile bending modes, Smart Materials and Structures, 2019, 28(2):0-02LT01. SCIE.
(19) Jiang, Weitao; Niu, Dong; Wei, Lanlan; Ye, Guoyong; Wang, Lanlan; Liu, Hongzhong; Chen, Ping; Luo, Feng; Lu, Bingheng; Controllable actuation of photomechanical bilayer nanocomposites for in vitro cell manipulation, Carbon, 2018, 139:1048-1056.
(20) Gu, Tongkai; Wang, Lanlan; Li, Rui; Dong, Yanzhen; Zhang, Yajun; Jia, Mengchao; Jiang, Weitao; Liu, Hongzhong; Liquid microsphere arrays for imaging magnification, Optics Communications, 2018, 428:89-94. SCIE.
(21) Rui, Li; Lanlan, Wang; Jingshuang, Dang; Lan, Mi; Jie, Han; Mao; Bangdao, Chen; Hongzhong, Liu; Reconfigurable and tunable photo-controlled hydrogel using hydrogen bonding to drive molecule self-assembly and cross-linking, Journal of Materials Science, 2020, 55(30):14740-14750.
(22) 蔡崇文; 叶国永; 刘红忠; 基于Vold-Kalman滤波的光栅谐波动态抑制方法, 仪器仪表学报, 2021, 42(03):17-24.
(23) Jiang, Weitao; Wang, Lanlan; Ye, Guoyong; Chen, Bangdao; Yin, Lei; Shi, Yongsheng; Liu, Hongzhong; Biomimetic magnetic-responsive cilia-like soft device: surface energy control and external field actuation, Journal of Materials Science: Materials in Electronics, 2019, 30(4):3767-3772.
(24) Li, Dachao; Liu, Hongzhong; Chen, Bangdao; Niu, Dong; Lei, Biao; Ye, Guoyong; Jiang, Weitao; Shi, Yongsheng; Yin, Lei; Lai, Guoquan; Amorphous Carbon-Induced Surface Defect Repair for Reinforcing the Mechanical Properties of Carbon Fiber, Materials, 2019, 12(8):0-1244.
(25) Zhang, Yajun; Wang, Lanlan; Gao, Wei; Gu, Tongkai; Li, Zhenjun; Li, Xuan; Li, Rui; Ye, Guoyong; Jiang, Weitao; Zhu, Yongkai; Liu, Hongzhong; Bioinspired from butterfly wings: programmable actuation of isolated rods architectures for magnetic-assisted microswitches, Smart Materials and Structures, 2019, 28(7):0-075014.
(26) Jie Han; Weitao Jiang; Dong Niu; Yiding Li; Yajun Zhang; Biao Lei; Hongzhong Liu; Yongsheng Shi; Bangdao Chen; Lei Yin; Xiaokang Liu; Donglin Peng; Bingheng Lu; Untethered Soft Actuators by Liquid–Vapor Phase
Transition: Remote and Programmable Actuation, Advanced Intelligent Systems, 2019, 1(8):1900109.
(27) Zhao, Tingting; Jiang, Weitao; Niu, Dong; Liu, Hongzhong; Chen, Bangdao; Shi, Yongsheng; Yin, Lei; Lu, Bingheng; Flexible pyroelectric device for scavenging thermal energy from chemical process and as self-powered temperature monitor, Applied Energy, 2017, 195:754-760.
(28) Jiang, Weitao; Zhao, Tingting; Liu, Hongzhong; Jia, Rui; Niu, Dong; Chen, Bangdao; Shi, Yongsheng; Yin, Lei; Lu, Bingheng; Laminated pyroelectric generator with spin coated transparent poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) electrodes for a flexible self-powered stimulator, RSC Advances, 2018, 8(27):15134-15140. SCIE.
(29) Tian Li; Weitao Jiang; Jie Han; Dong Niu; Hongzhong Liu; Bingheng Lu; Enhancements of Loading Capacity and Moving Ability by Microstructures for Wireless Soft Robot Boats, Langmuir, 2020, 36(48):14728-14736.
(30) Jie, Han; Weitao, Jiang; Hongjian, Zhang; Yajun, Zhang; Xueming, Feng; Lanlan, Wang; Dong, Niu; Biao, Lei; Hongzhong, Liu; Untethered, ultra-light soft actuator based on positively charged 3D fluffy silica micro-nanofibers by electrospinning, Journal of Materials Science, 2020, 55(27):12789-12800.
(31) Jie Han; Weitao Jiang; Hongjian Zhang; Biao Lei; Lanlan Wang; Hongzhong Liu; Submersible Soft‐Robotic Platform for Noise‐Free Hovering Utilizing Liquid–Vapor Phase Transition, Advanced Intelligent Systems, 2021, 3(1):2000147.
(32) Fahao Qin; Lanlan Wang; Weitao Jiang; Yajun Zhang; Hongzhong Liu; Three-dimensional patterned distribution of thermal conductivity in the volume for effective thermal concentration, Journal of Applied Physics, 2021, 129:55102.