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3D Laser Micro- and Nanoprinting: Challenges for Chemistry

机译:3D激光微型和纳米罩:化学挑战

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摘要

3D printing is a powerful emerging technology for the tailored fabrication of advanced functional materials. This Review summarizes the state-of-the art with regard to 3D laser micro- and nanoprinting and explores the chemical challenges limiting its full exploitation: from the development of advanced functional materials for applications in cell biology and electronics to the chemical barriers that need to be overcome to enable fast writing velocities with resolution below the diffraction limit. We further explore chemical means to enable direct laser writing of multiple materials in one resist by highly wavelength selective (-orthogonal) photochemical processes. Finally, chemical processes to construct adaptive 3D written structures that are able to respond to external stimuli, such as light, heat, pHvalue, or specific molecules, are highlighted, and advanced concepts for degradable scaffolds are explored.
机译:3D印刷是一种强大的新兴技术,用于定制高级功能材料的制造。 本综述总结了3D激光微型和纳米制品的最新技术,并探讨了限制其全剥削的化学挑战:从高级功能材料的开发,用于细胞生物学和电子产品的应用需求的化学障碍 被克服以使快速写入速度与低于衍射极限的分辨率。 我们进一步探索化学方法,以通过高波长选择性( - 正交)光化学方法在一种抗蚀剂中能够直接激光写入多种材料。 最后,构建能够响应外部刺激的自适应3D写入结构的化学方法,例如光,热,百差或特定分子,并且探讨了可降解支架的先进概念。

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