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光固化金属硫族化合物的广义光学印刷

Generalised optical printing of photocurable metal chalcogenides.

作者信息

Baek Seongheon, Ban Hyeong Woo, Jeong Sanggyun, Heo Seung Hwae, Gu Da Hwi, Choi Wooyong, Choo Seungjun, Park Yae Eun, Yoo Jisu, Choi Moon Kee, Lee Jiseok, Son Jae Sung

机构信息

Department of Materials Science and Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, Republic of Korea.

School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, Republic of Korea.

出版信息

Nat Commun. 2022 Sep 7;13(1):5262. doi: 10.1038/s41467-022-33040-2.

Abstract

Optical three-dimensional (3D) printing techniques have attracted tremendous attention owing to their applicability to mask-less additive manufacturing, which enables the cost-effective and straightforward creation of patterned architectures. However, despite their potential use as alternatives to traditional lithography, the printable materials obtained from these methods are strictly limited to photocurable resins, thereby restricting the functionality of the printed objects and their application areas. Herein, we report a generalised direct optical printing technique to obtain functional metal chalcogenides via digital light processing. We developed universally applicable photocurable chalcogenidometallate inks that could be directly used to create 2D patterns or micrometre-thick 2.5D architectures of various sizes and shapes. Our process is applicable to a diverse range of functional metal chalcogenides for compound semiconductors and 2D transition-metal dichalcogenides. We then demonstrated the feasibility of our technique by fabricating and evaluating a micro-scale thermoelectric generator bearing tens of patterned semiconductors. Our approach shows potential for simple and cost-effective architecturing of functional inorganic materials.

摘要

光学三维(3D)打印技术因其适用于无掩膜增材制造而备受关注,这种制造方式能够经济高效且直接地创建图案化结构。然而,尽管它们有潜力替代传统光刻技术,但通过这些方法获得的可打印材料严格限于光固化树脂,从而限制了打印物体的功能及其应用领域。在此,我们报告一种通用的直接光学打印技术,通过数字光处理获得功能性金属硫族化物。我们开发了通用的可光固化硫族金属酸盐墨水,可直接用于创建各种尺寸和形状的二维图案或微米厚的2.5D结构。我们的工艺适用于多种用于化合物半导体和二维过渡金属硫族化物的功能性金属硫族化物。然后,我们通过制造和评估一个带有数十个图案化半导体的微型热电发电机,证明了我们技术的可行性。我们的方法显示出简单且经济高效地构建功能性无机材料的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0a9/9452581/53600c88055d/41467_2022_33040_Fig1_HTML.jpg

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