Preparation of Silicon Microrobots: An Experiment in Micro/Nanofabrication and Devices

Abstract This paper reports an undergraduate laboratory experiment designed for a course on micro/nanofabrication and devices, in which students fabricate and characterize silicon nanowire–based microrobots using standard micro/nanofabrication techniques. The experiment integrates photolithography, silicon etching, and thin-film deposition to construct ordered silicon nanowire arrays featuring an in situ SiO2 insulating layer and deposited metal films, thereby forming metal–insulator–semiconductor (MIS) junctions capable of enabling light-driven propulsion. By combining top–down microfabrication with bottom–up nanostructure formation, the project introduces students to fundamental concepts in modern micro/nanoengineering, including template-assisted fabrication, structure–property relationships, and microrobot motion analysis. The laboratory instruction combines demonstrations by teaching assistants with hands-on practice by students, extends beyond conventional “cookbook-style” laboratory instruction by emphasizing process optimization, parameter regulation, and experimental data analysis, thereby strengthening students’ understanding of micro/nanodevice fabrication principles and operational mechanisms. Overall, this work provides a modular, reproducible, and pedagogically accessible laboratory framework for incorporating emerging microrobot technologies into undergraduate engineering and applied science curricula.

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Publication Details

Journal
Journal of Chemical Education
Published
2026-09-18
DOI
https://doi.org/10.1021/acs.jchemed.6c00765
Primary Topic
Micro and Nano Robotics
Type
article
Field-Weighted Citation Impact
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Preparation of Silicon Microrobots: An Experiment in Micro/Nanofabrication and Devices

Jizhuang Wang, Yin Ning, Hao Sun, Jingsong Yao et al.
Journal of Chemical Education
Micro and Nano Robotics
article

Preparation of Silicon Microrobots: An Experiment in Micro/Nanofabrication and Devices

Jizhuang Wang, Yin Ning, Hao Sun, Jingsong Yao, Li Chen, Rong Huang, Kunfeng Liu, Jia Tan, Guangdong Yang, Feixia Chen
article en

Abstract

Abstract This paper reports an undergraduate laboratory experiment designed for a course on micro/nanofabrication and devices, in which students fabricate and characterize silicon nanowire–based microrobots using standard micro/nanofabrication techniques. The experiment integrates photolithography, silicon etching, and thin-film deposition to construct ordered silicon nanowire arrays featuring an in situ SiO2 insulating layer and deposited metal films, thereby forming metal–insulator–semiconductor (MIS) junctions capable of enabling light-driven propulsion. By combining top–down microfabrication with bottom–up nanostructure formation, the project introduces students to fundamental concepts in modern micro/nanoengineering, including template-assisted fabrication, structure–property relationships, and microrobot motion analysis. The laboratory instruction combines demonstrations by teaching assistants with hands-on practice by students, extends beyond conventional “cookbook-style” laboratory instruction by emphasizing process optimization, parameter regulation, and experimental data analysis, thereby strengthening students’ understanding of micro/nanodevice fabrication principles and operational mechanisms. Overall, this work provides a modular, reproducible, and pedagogically accessible laboratory framework for incorporating emerging microrobot technologies into undergraduate engineering and applied science curricula.

Journal of Chemical Education
University of Jinan (CN)
Openalex Percentile: Top 17%
Micro and Nano Robotics
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Preparation of Silicon Microrobots: An Experiment in Micro/Nanofabrication and Devices — Jizhuang Wang, Yin Ning, et al. · Journal of Chemical Education (2026) | TGRS Research Map | TGRS