Acoustic Trapping: An Emerging Tool for Microfabrication Technology

Author:

Yin Chengying1,Jiang Xingyu1,Mann Stephen234ORCID,Tian Liangfei156ORCID,Drinkwater Bruce W.7ORCID

Affiliation:

1. Key Laboratory of Biomedical Engineering of Ministry of Education Zhejiang Provincial Key Laboratory of Cardio‐Cerebral Vascular Detection Technology and Medicinal Effectiveness Appraisal Department of Biomedical Engineering Zhejiang University Hangzhou 310027 China

2. Centre for Protolife Research and Centre for Organized Matter Chemistry School of Chemistry University of Bristol Bristol BS8 1TS UK

3. Max Planck‐Bristol Centre for Minimal Biology University of Bristol Bristol BS8 1TS UK

4. School of Materials Science and Engineering Shanghai Jiao Tong University Shanghai 200240 P. R. China

5. Binjiang Institute of Zhejiang University 66 Dongxin Road Hangzhou 310053 China

6. Department of Ultrasound Women's Hospital Zhejiang University School of Medicine Hangzhou 310006 China

7. Faculty of Engineering Queen's Building University of Bristol Bristol BS8 1TR UK

Abstract

AbstractThe high throughput deposition of microscale objects with precise spatial arrangement represents a key step in microfabrication technology. This can be done by creating physical boundaries to guide the deposition process or using printing technologies; in both approaches, these microscale objects cannot be further modified after they are formed. The utilization of dynamic acoustic fields offers a novel approach to facilitate real‐time reconfigurable miniaturized systems in a contactless manner, which can potentially be used in physics, chemistry, biology, as well as materials science. Here, the physical interactions of microscale objects in an acoustic pressure field are discussed and how to fabricate different acoustic trapping devices and how to tune the spatial arrangement of the microscale objects are explained. Moreover, different approaches that can dynamically modulate microscale objects in acoustic fields are presented, and the potential applications of the microarrays in biomedical engineering, chemical/biochemical sensing, and materials science are highlighted alongside a discussion of future research challenges.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

China Postdoctoral Science Foundation

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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