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[1] Zhang, M., Xia, L.-P., Dang, S.-H., Cao, A.-X., Deng, Q.-L., & Du, C.-L. (2020). A Novel Nanoimprint Lithography Thiol-ene Resist for Sub-70 nm Nanostructures. Science of Advanced Materials, 12(6), 779–783.
[2] Zhang, M., Xia, L., Dang, S., Cao, A., Shi, L., & Du, C. (2020). Roller nanoimprint lithography for low-cost nanoscale random lattice diffractive optical elements. AIP Advances, 10(3), 35221.
[3] Zhang, M., Xia, L., Dang, S., Shi, L., Cao, A., & Du, C. (2020). Self-powered flexible pressure sensors based on nanopatterned polymer films. Sensor Review, 40(6), 629–635.
[4] Zhang, M., Xia, L., Dang, S., Cao, A., Shi, L., Pang, H., & Du, C. (2019). Electrical Properties of Double-Sided Polymer Surface Nanostructures. Nanoscale Research Letters, 14(1), 230.
[5] Zhang, M., Xia, L., Dang, S., Cao, A., Shi, L., Deng, Q., & Du, C. (2019). Fabrication of Vertical Organic Nanowire Arrays via Modified Nanoimprint Lithography. Nanoscience and Nanotechnology Letters, 11(7), 1004–1007.
[6] Zhang, M., Xia, L., Dang, S., Shi, L., Cao, A., Deng, Q., & Du, C. (2019). A flexible single-electrode-based triboelectric nanogenerator based on double-sided nanostructures. AIP Advances, 9(7), 75221.
[7] Zhang, M., Xia, L., Dang, S., & Du, C. (2019). Novel hybrid adhesive material based on thiol-ene system for nano-conglutination technology. In Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series (Vol. 11193).
[8] Zhang, M., Xia, L., Dang, S., Shi, L., Cao, A., & Du, C. (2019). A Flexible Pressure Sensor Based on Poly(dimethylsiloxane) Nanostructures Film. Journal of Microelectronic Manufacturing, 2(3), 1–8.
[9] Zhang, M., Deng, Q., Pang, H., Shi, L., & Cao, A. (2018). Preparation of Double-sided Nanostructure Based on Soft-nanoimprinting LithographyGeneralized Euler’Constant Family. Journal of Microelectronic Manufacturing, 1(2), 1–5.
[10] Zhang, Man, et al. Polymer Periodic Nanostructures on Curved Substrates by UV-Curable Hybrid Soft Nanoimprint Lithography. Nanoscience and Nanotechnology Letters, 2017, 9(12): 2101–2104.
[11] Man Zhang, Qiling Deng, Lifang Shi, Hui Pang, Axiu Cao, and Song Hu. Nanobowl array fabrication based on nanoimprint lithography [J]. Optik, 2016, 127: 145-147.
[12] Man Zhang, Qiling Deng, Lifang Shi, Hui Pang, Axiu Cao, and Song Hu*. Fabrication of hybrid soft-nanoimprint stamp with sub-100 nm resolution based on thiol-ene [J], Journal of Nanoscience and Nanotechnology, 2016, 16(12): 12316–12320.
[13] Man Zhang, Qiling Deng, Lifang Shi, Axiu Cao, Hui Pang, and Song Hu. Fabrication of high aspect ratio (>100:1) nanopillar array based on thiol-ene [J], Microelectronic Engineering, 2016, 149: 52-56.
[14] Man Zhang, Liangping Xia, Qiling Deng, Lifang Shi, Axiu Cao, Hui Pang, Song Hu. Nanobowl array fabrication via conglutination process based on thiol–ene polymer [J]. IEEE Photonics Journal, 2015, 7(4):1-6.
[15] Man Zhang, Qiling Deng, Liangping Xia, Lifang Shi, Axiu Cao, Hui Pang, Song Hu. Hollow nanospheres array fabrication via nano-conglutination technology [J]. Journal of Nanoscience & Nanotechnology, 2015, 15(9): 6798-6800.
[16] Man Zhang, Qiling Deng, Lifang Shi, Hui Pang, Axiu Cao, and Song Hu. Fabrication of hybrid soft-nanoimprint mold in benign ambient based on thol-ene [J]. Optik, 2015, 126(23):4123-4126.
[17] Liangping Xia, Man Zhang, Zheng Yang, Hongliang Cui, Shaoyun Yin, Song Hu and Chunlei Du. Nanochannel fabrication by imprinting-induced cracks [J]. Applied Physics Letters, 2014, 104(7):073104-073104-4.
[18] Zhang Man, Deng Qiling, Pang Hui, Shi Lifang, Cao Axiu . Preparation of Double-sided Nanostructure Based on Soft-nanoimprinting Lithography, Journal of Microelectronic Manufacturing, 1, 18010201 (2018).
[19] 张满,邓启凌,李志炜,庞辉,史立芳,曹阿秀,胡松. 基于巯基-烯材料的亚波长光栅制备方法研究[J]. 光电工程, 2016.
[20] Zhang M, Deng Q, Shi L, et al. Fabrication of resonant subwavelength grating based on thiol-ene [J]. Proceedings of SPIE, 2014, 9283: 92830R-1-92830R-6.
[21] Man Zhang, Qiling Deng, Lifang Shi, Hui Pang, Axiu Cao, and Song Hu. Fabrication of nano-pillar with sub-100nm resolution based on thiol-ene [J]. Proc. of SPIE, 2014, 9277: 92771U-1~92771U-7.
[22] Zhang M, Li Z, Shi L, et al. Fabrication of optical elements using a rapid UV-curable and low-viscosity polymer material [J]. Proceedings of SPIE, 2013, 8759:875926-875926-5.