代表性论文(*通讯作者) 1. Zhichang Du; Wei Sun; Shengli Mi; Multi-step PDMS curing and a controlled separation method for mass manufacturing of high-performance and user-friendly microdevices: valved micropumps, Lab Chip, 2024, 24(4): 843-853. 2. Wenzheng Zhu, Zhichang Du*, Yongqiang Tu, Yan Huang, Bo Liang, Xiaokun Chen, Gengning Cao, Shenghong Xiao, Shaohui Yang. Experimental study of a backward bent duct buoy wave energy converter: Effects of the air chamber and center of gravity height. Ocean Engineering, 2024(313), 119447. 3. Shaohui Yang; Zhichang Du*; Ping Tang; Yan Huang; Jianyu Fan;Wave-to-Wire Model and Output Performance Analysis of a Point Absorption Wave Energy Converter Based on Triboelectric Nanogenerator, Energy Technology, 2024, 2400520. 4. Du Zhichang, Yang Shaohui, Gong Qingzhong, et al. Research of restricted migration evaluation of MDA-MB-231 cells in 2D and 3D co-culture models[J]. Experimental Biology & Medicine, 2023, 248(23) 5. Du Zhichang, Zhao Gangnan, Wang Anyang, et al. Pressure-Triggered Microfluidic Contact Lens for Ocular Drug Delivery[J]. ACS Applied Polymer Materials, 2022, 4(10): 7290-7299. 6. Zhang Ke#, Du Zhichang#, Yuan Tianying, et al. Long-term cultured microvascular networks on chip for tumor vascularization research and drug testing[J]. Biomicrofluidics, 2022, 16(4): 044101. 7. Mi Shengli#; Du Zhichang#; Xu Yuanyuan; Sun Wei*; The crossing and integration between microfluidic technology and 3D printing for organ-on-chips, Journal of Materials Chemistry B, 2018, 6(39):6191-6206. 8. Du Zhichang; Mi Shengli; Yi Xiaoman; Xu Yuanyuan; Sun Wei*; Microfluidic system for modelling 3D tumour invasion into surrounding stroma and drug screening, Biofabrication, 2018, 10(3):034102. 9. Mi Shengli#; Du Zhichang#; Xu Yuanyuan; Wu Zhengjie; Qian Xiang; Zhang min; Sun Wei*; Microfluidic co-culture system for cancer migratory analysis and anti-metastatic drugs screening, Scientific reports, 2016, 6: srep35544. 代表性发明专利: 1. 杜志昌;胡小龙;涂勇强;杨绍辉;林雨瑞;范健宇;黄衍;一种基于腔内流体动势能转换的波浪能发电浮标及方法,2024-10-08,中国, CN 118601785 B 2. 杜志昌;林俊鹏;涂勇强;林北辰;杨绍辉;一种高度自动化海水营养盐微流控检测装置及方法,2024-11-12,中国, CN 118603884 B 3. 杜志昌; 杨绍辉; 林培林; 弓清忠; 柯江岩; 林忠华 ; 一种用于四辊主轴多线切割机的辅助绕线装置及控制方法, 2023-12-04, 中国, CN202311647278.3 4. 杜志昌; 弓清忠; 林培林; 杨绍辉; 林忠华 ; 一种用于多线切割机主辊轴的易拆换自紧结构及实施方法, 2023-12-07, 中国, CN202311672794.1 5. 杜志昌; 陈灵; 杨绍辉; 林忠华 ; 一种用于即时检测的模块化集成的指压定量流体驱动芯片, 2023-11-06, 中国, CN202311463228.X 6. 杜志昌; 吴志文; 李恒远 ; 一种产品自动抛光设备, 2022-06-10, 中国,CN202210654383.9 (专利) 7. 杜志昌; 吴志文; 李恒远 ; 一种极性粉末材料的微波加热搅拌系统及温度控制方法, 2022-08-12, 中国, CN202210653903.4 (专利) 8. 杜志昌; 吴志文; 李恒远 ; 一种脲醛粉末加热保温装置, 2022-6-10, 中国,CN202210653621.4 (专利) 9. 弥胜利; 杜志昌 ; 用于与芯片集成的微泵的批量化制作方法和制作设备, 2022-1-25, 中国,CN111810387A (专利) 10. 弥胜利; 杜志昌 ; 一种基于电磁铁驱动的流体脉冲压力发生器, 2020-7-3, 中国,CN202010636517.5 (专利) 11. 弥胜利; 杜志昌; 黄嘉骏; 唐喜军 ; 一种用于核酸扩增检测的微流控芯片, 2021-1-5, 中国,CN201922299054.3 (专利) 12. 弥胜利; 杜志昌; 黄嘉骏; 唐喜军 ; 一种用于核酸扩增检测的微流控芯片及检测方法, 2019-12-19,中国, CN201911320271.4 (专利)
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