Optical sorting combines optical tweezers with diverse techniques, including optical spectrum, artificial intelligence (AI) and immunoassay, to endow unprecedented capabilities in particle sorting. In comparison to other methods such as microfluidics, acoustics and electrophoresis, optical sorting offers appreciable advantages in nanoscale precision, high resolution, non-invasiveness, and is becoming increasingly indispensable in fields of biophysics, chemistry, and materials science. This review aims to offer a comprehensive overview of the history, development, and perspectives of various optical sorting techniques, categorised as passive and active sorting methods. To begin, we elucidate the fundamental physics and attributes of both conventional and exotic optical forces. We then explore sorting capabilities of active optical sorting, which fuses optical tweezers with a diversity of techniques, including Raman spectroscopy and machine learning. Afterwards, we reveal the essential roles played by deterministic light fields, configured with lens systems or metasurfaces, in the passive sorting of particles based on their varying sizes and shapes, sorting resolutions and speeds. We conclude with our vision of the most promising and futuristic directions, including AI-facilitated ultrafast and bio-morphology-selective sorting. It can be envisioned that optical sorting will inevitably become a revolutionary tool in scientific research and practical biomedical applications.
Optical sorting: past, present and future.
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作者:Yang Meng, Shi Yuzhi, Song Qinghua, Wei Zeyong, Dun Xiong, Wang Zhiming, Wang Zhanshan, Qiu Cheng-Wei, Zhang Hui, Cheng Xinbin
| 期刊: | Light-Science & Applications | 影响因子: | 23.400 |
| 时间: | 2025 | 起止号: | 2025 Feb 27; 14(1):103 |
| doi: | 10.1038/s41377-024-01734-5 | ||
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