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个人信息

姓  名: 徐鹏飞 性  別: 导师类型:
技术职称: 讲师 电子邮箱: [email protected]
学术型硕士招生学科:
专业型硕士招生类别(领域):
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个人简介:

徐鹏飞,202412月博士毕业于大连理工大学机械工程学院,20251月加入幸运轮盘 集成电路科学与工程学院,参与变革型技术重点研发课题、ZF重点基金、自然科学基金等国家级重点科研项目多项,在Nature Communications、Microsystems & Nanoengineering国际权威期刊发表研究论文14篇,申请/授权国家(国防)发明专利7项。

研究领域:

微谐振加速度计

位移传感器

电子皮肤

学术成果:

[1] Xu P, Wang D*, He J, Cui Y, Lu L, Li Y, Chen X, Liu C, Suo L, Wang T, Cui Y. A zinc oxide resonant nano-accelerometer with high sensitivity [J]. Nature Communications, 2024, 15: 4651.

[2] Xu P, Wang D*, Cui Y, Zhang Y, He J, Lu L, Li Y, Chen X, Liu C, Li P, Suo L, Cui Y. A high frequency SiC nanobeam resonator with ultra-sensitivity [J].Materials & Design, 2023, 233: 112226.

[3] Wang D*, Xu P, Cui Y, Zhang Y, He J, Lu L, Li Y, Chen X, Liu C, Li P, Suo L, Cui Y. A zinc oxide nanobeam resonator for ultrasensitivity mass detection [J].AdvancedElectronicMaterials, 2023, 9: 2300079.

[4] Ji J., Xu P., Chen J., et al. High Depth-of-Field Nanostructures by Rotational Near-Field Photolithography[J]. Plasmonics, 2020, 15(1): 209-215.

[5] Ji J., Xu P., Lin Z., et al. Application of the Metal Reflector for Redistributing the Focusing Intensity of SPPs[J]. Nanomaterials, 2020, 10(5):10050937.

[6] Ji J., Chen J., Xu P., et al. Effect of plasmonic lens distribution on flight characteristics in rotational near-field photolithography[J]. Journal of Applied Physics, 2019, 126(18):183101.

[7] Wang D*, Lu L, Zhao Z, Zhao K, Zhao X, Pu C, Li Y, Xu P, Chen X, Guo Y, Suo L, Liang J, Cui Y, Liu Y. Large area polymer semiconductor sub-microwire arrays by coaxial focused electrohydrodynamic jet printing for high-performance OFETs [J] Nature Communications, 2022, 13: 6214.

[8] Lu L, Wang D*, Pu C, Cao Y, Li Y, Xu P, Chen X, Liu C, Liang S, Suo L, Cui Y, Zhao Z, Guo Y, Liang J, Liu Y. High-performance flexible organic field effect transistors with print-based nanowires [J], Microsystems & Nanoengineering, 2023, 9: 80.

[9] Lu L, Wang D*, Zhao Z, Li Y, Pu C, Xu P, Liu C, Chen X, Liang S, Suo L, Liang J, Cui Y, Guo Y, Liu Y. Optimized coaxial focused electrohydrodynamic jet printing of highly ordered semiconductor sub-microwire arrays for high-performance organic field-effect transistors [J]. Nanoscale, 2023,15: 1880-1889.

[10] Wang D*, Li Y, Hu X, Lu L, Xu P, Chen X, Liu C, Wang L, Liu B, Suo L, Cui Y, Liang J. Electrohydrodynamic jet printed bioinspired piezoelectric hair-like sensor for high-sensitivity air-flow detection [J]. Smart Materials and Structures, 2023, 32: 095020.

[11] Zeshan A, Wang D*, Lu L, Li Y, Pu C, Chen X, Xu P, Liang S, Kong L, Tang B. Computational study of drop-on-demand coaxial electrohydrodynamic jet and printing microdroplets [J]. Micromachines, 2023, 4: 812.

[12] Wang D*, Zeshan A, Lu L, Liang S, Zhao X, Xu P, Zhao K, Suo L, Cui Y, Yin P, Tang B, Xie J, Yang Y, Liang J. Simulation of cone-jet and micro-drip regimes and printing of micro-scale patterns on PET substrate [J]. Polymers, 2022, 14:2683.

[13] Wang D*, Zeshan A, Lu L, Zhao X, Xu P, Zhao K, Yin P, Liang J. Numerical modeling and analysis of coaxial electrohydrodynamic jet printing [J]. Scientific Reports, 2022, 12: 1924.

[14] Zhao K, Yuan Y, Wang D*, Zong H, Lu L, Xu P, Wang L, Jiang C, Jiang Z, Li Y, Wang Z. Fabrication and characterisation of piezoelectric thick-film microcantilever deposited on stainless steel using electrohydrodynamic jet deposition [J].Ceramics International, 2021, 47 (20): 28736-28743.

详见个人学术主页:

//www.researchgate.net/profile/Pengfei-Xu?ev=hdr_xprf 

//scholar.google.com.hk/citations?hl=zh-CN&user=VwNi-cQAAAAJ&view_op=list_works&sortby=pubdate


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