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通过直接递送进行的三维纳米打印

Three-Dimensional Nanoprinting via Direct Delivery.

作者信息

Ventrici de Souza Joao, Liu Yang, Wang Shuo, Dörig Pablo, Kuhl Tonya L, Frommer Jane, Liu Gang-Yu

机构信息

Department of Chemistry, University of California , Davis, California 95616, United States.

Cytosurge AG , Glattbrugg 8152, Switzerland.

出版信息

J Phys Chem B. 2018 Jan 18;122(2):956-962. doi: 10.1021/acs.jpcb.7b06978. Epub 2017 Nov 28.

Abstract

Direct writing methods are a generic and simple means to produce designed structures in three dimensions (3D). The printing is achieved by extruding printing materials through a nozzle, which provides a platform to deliver a wide range of materials. Although this method has been routinely used for 3D printing at macroscopic scales, miniaturization to micrometer and nanometer scales and building hierarchical structures at multidimensional scales represent new challenges in research and development. The current work addresses these challenges by combining the spatial precision of atomic force microscopy (AFM) and local delivery capability of microfluidics. Specialized AFM probes serve dual roles of a microscopy tip and a delivery tool, enabling the miniaturization of 3D printing via direct material delivery. Stacking grids of 20 μm periodicity were printed layer-by-layer covering 1 mm × 1 mm regions. The spatial fidelity was measured to be several nanometers, which is among the highest in 3D printing. The results clearly demonstrate the feasibility of achieving high precision 3D nanoprinting with nanometer feature size and accuracy with practical throughput and overall size. This work paves the way for advanced applications of 3D hierarchical nanostructures.

摘要

直接书写方法是一种在三维(3D)空间中制造设计结构的通用且简单的方法。打印是通过将打印材料从喷嘴挤出实现的,喷嘴为输送各种材料提供了一个平台。尽管这种方法已在宏观尺度上常规用于3D打印,但向微米和纳米尺度的小型化以及在多维尺度上构建分层结构在研发中代表着新的挑战。当前的工作通过结合原子力显微镜(AFM)的空间精度和微流体的局部输送能力来应对这些挑战。专门的AFM探针兼具显微镜尖端和输送工具的双重作用,通过直接材料输送实现3D打印的小型化。打印了周期性为20μm的堆叠网格,逐层覆盖1mm×1mm的区域。测量得到的空间保真度为几纳米,这在3D打印中是最高的之一。结果清楚地证明了以实际产量和整体尺寸实现具有纳米特征尺寸和精度的高精度3D纳米打印的可行性。这项工作为3D分层纳米结构的先进应用铺平了道路。

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