3D打印微流控芯片技术研究进展

范一强 王玫 张亚军

引用本文: 范一强, 王玫, 张亚军. 3D打印微流控芯片技术研究进展[J]. 分析化学, 2016, 44(4): 551-561. doi: 10.11895/j.issn.0253-3820.160119 shu
Citation:  FAN Yi-Qiang, WANG Mei, ZHANG Ya-Jun. Recent Progress of 3D Printed Microfluidics Technologies[J]. Chinese Journal of Analytical Chemistry, 2016, 44(4): 551-561. doi: 10.11895/j.issn.0253-3820.160119 shu

3D打印微流控芯片技术研究进展

    通讯作者: 范一强
摘要: 近年来,微流控技术在生命科学和医学诊断等领域得到广泛的应用,显示出了其在检测速度、精度以及试剂损耗等方面相比传统方法的显著优势。然而,使用从半导体加工技术继承而来的微加工技术制作微流控芯片具有比较高的资金和技术门槛,在一定程度上阻碍了微流控技术的推广和应用。近年来随着3D打印技术的兴起,越来越多的研究者尝试使用3D打印技术加工微流控芯片。相比于传统的微加工技术,3D打印微流控芯片技术显示出了其设计加工快速、材料适应性广、成本低廉等优势。本文针对近年来国内外在3D打印微流控芯片领域的最新进展进行了综述,着重介绍了采用微立体光刻、熔融沉积成型以及喷墨打印等3D打印技术加工制作微流控芯片的方法,以及这些微流控芯片在分析化学、生命科学、医学诊断等领域的应用,并对3D打印微流控芯片技术未来的发展进行了展望。

English

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  • 收稿日期:  2016-02-22
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