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Photolithographic patterning of cellulose: a versatile dual-tone photoresist for advanced applications

机译:纤维素的光刻图案:适用于高级应用的多功能双色调光刻胶

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摘要

In many areas of science and technology, patterned films and surfaces play a key role in engineering and development of advanced materials. Here, we present a versatile toolbox that provides an easy patterning method for cellulose thin films by means of photolithography and enzymatic digestion. A patterned UV-illumination of trimethylsilyl cellulose thin films containing small amounts of a photo acid generator leads to a desilylation reaction and thus to the formation of cellulose in the irradiated areas. Depending on the conditions of development, either negative and positive type cellulose structures can be obtained, offering lateral resolutions down to the single-digit micro meter range by means of contact photolithography. In order to highlight the potential of this material for advanced patterning techniques, cellulose structures with sub-µm resolution are fabricated by means of two-photon absorption lithography. Moreover, these photochemically structured cellulose thin films are successfully implemented as dielectric layers in prototype organic thin film transistors. Such photopatternable dielectric layers are crucial for the realization of electrical interconnects for demanding organic device architectures.Electronic supplementary materialThe online version of this article (doi:10.1007/s10570-014-0471-4) contains supplementary material, which is available to authorized users.
机译:在科学和技术的许多领域中,带图案的薄膜和表面在先进材料的工程和开发中起着关键作用。在这里,我们介绍了一种多功能的工具箱,该工具箱通过光刻和酶消化为纤维素薄膜提供了一种简便的构图方法。包含少量光酸产生剂的三甲基硅烷基纤维素薄膜的图案化UV照射会导致脱甲硅烷基化反应,从而导致在照射区域形成纤维素。根据显影条件的不同,可以获得负型和正型纤维素结构,通过接触光刻技术可提供低至个位数微米范围的横向分辨率。为了突出这种材料在高级构图技术中的潜力,通过双光子吸收光刻技术制造了亚微米分辨率的纤维素结构。而且,这些光化学结构化的纤维素薄膜已成功地实现为原型有机薄膜晶体管中的介电层。这种可光图案化的介电层对于实现要求苛刻的有机设备体系结构的电气互连至关重要。电子辅助材料本文的在线版本(doi:10.1007 / s10570-014-0471-4)包含辅助用户可以使用的辅助材料。

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