代表性论文 |
(1) Jun Chen, Ting Wu b, Libing Zhang, Chengli Tang, Haijun Song, Fengli Huang, Chuncheng Zuo. Flexible ionic-gel strain sensor with double network, high conductivity and high frost-resistance using electrohydrodynamic printing method, Additive Manufacturing,2022, 58, 103021. (共同通讯作者) (2) Jiaqing Luo, Libing Zhang, Ting Wu, Haijun Song, Chengli Tang. Flexible piezoelectric pressure sensor with high sensitivity for electronic skin using near-field electrohydrodynamic direct-writing method, Extreme Mechanics Letters, 2021, 48: 101279. (通讯作者) (3) Hangfeng Dong, Libing Zhang, Ting Wu, Haijun Song, Jiaqing Luo, Fengli Huang, Chuncheng Zuo. Flexible pressure sensor with high sensitivity and fast response for electronic skin using near-field electrohydrodynamic direct writing, Organic Electronics, 2021, 89: 106044. (通讯作者) (4) Jiaqing Luo, Libing Zhang, Ting Wu, Haijun Song, Chengli Tang, Fengli Huang, Chuncheng Zuo. Flexible electronic skin with high performance pressure sensing based on PVDF/rGO/BaTiO3 composite thin film, Organic Electronics, 2021, 98: 106296. (通讯作者) (5) Ting Wu, Libing Zhang, Haijun Song. Control method of applied voltage for fabricating micro-pattern using near-field electrohydrodynamic direct-writing technology, AIP Advances, 2021, 11(11): 115120. (通讯作者) (6) Jianzhou Chen, Ting Wu, Libing Zhang, Xiaowei Feng, Peng Li, Fengli Huang, Chuncheng Zuo, Zhangping Mao. Fabrication of flexible organic electronic microcircuit pattern using near-field electrohydrodynamic direct-writing method, Journal of Materials Science-Materials in Electronics, 2019, 30(19): 17863-17871. (通讯作者) (7) Jianzhou Chen, Ting Wu, Libing Zhang, Peng Li, Xiaowei Feng, Dazhen Li. Effect of process parameters on organic micro patterns fabricated on a flexible substrate using the near-field electrohydrodynamic direct-writing method, Micromachines, 2019, 10: 287. (共同通讯作者) |
其他成果 (含授权和申请专利) |
(1)一种电场驱动熔融喷射沉积微结构的控制方法. 发明专利,专利号ZL202110898899.3,授权日期2022.05.10,排名1. (2)一种热熔电流体动力学高均匀性喷印三维微结构控制方法. 发明专利, 专利号ZL202110899363.3,授权日期2022.05.27, 排名1. (3)电流体动力学喷印任意三维柔性电子电路图案的方法. 发明专利,专利号 ZL2019106636441,授权日期2021.06.22, 排名1. (4)一种电流体动力学喷印的人工智能控制系统及控制方法. 发明专利,专利号ZL2018109527456,授权日期2020.02.04, 排名1. (5) 图案喷印宽度驱动的电流体动力学喷印控制方法. 发明专利,专利号ZL2019106720297, 授权日期2020.04.24, 排名1. (6) 一种柔性电子可延展性互连曲线的电流体动力学直写方法. 发明专利,专利号ZL2019107161134, 授权日期: 2020.05.01,排名1. (7) 均匀间距的点阵结构图案的电流体动力学喷印控制方法. 发明专利,专利号ZL 2019107161064, 授权日期2020.05.15,排名1. (8)一种高定位精度的电流体动力学喷印方法. 发明专利,专利号ZL2019107161134, 授权日期2020.06.05, 排名1. (9) 一种近场电流体动力喷印的工作电压补偿方法. 发明专利,专利号ZL2018102329153, 授权日期2020.06.23, 排名1. (10) 一种电流体动力学高分辨率喷墨打印的控制方法. 发明专利,专利号ZL201710637141.8, 授权日期2019.01.29, 排名1. (11) 电流体动力学直写过程的全闭环实时自适应控制方法. 发明专利,专利号ZL2016109478751, 授权日期2019.05.17, 排名1. (12) 近场电流体动力喷印工作电压具有短延迟时间的控制方法. 发明专利,专利号ZL2018102329187, 授权日期2019.05.17,排名1. (13) 大面积微纳结构电流体动力学打印的喷射高度误差补偿方法. 发明专利,专利号ZL2016106339390, 授权日期2018.05.15, 排名1. (14)一种控制电流体动力学打印分辨率的控制装置及设备与方法. 发明专利,专利号ZL2016101382178, 授权日期2018.01.23, 排名1. (15)一种曲面基板的电流体动力学打印设备及其控制方法, 发明专利,专利号: ZL2016107146018, 授权日期2017.09.01, 排名1. |