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通过电子束辐照使室温离子液体单体聚合,旨在制备三维微聚合物/纳米聚合物结构。

Polymerization of room-temperature ionic liquid monomers by electron beam irradiation with the aim of fabricating three-dimensional micropolymer/nanopolymer structures.

作者信息

Minamimoto H, Irie H, Uematsu T, Tsuda T, Imanishi A, Seki S, Kuwabata S

机构信息

§Department of Chemistry, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan.

出版信息

Langmuir. 2015 Apr 14;31(14):4281-9. doi: 10.1021/la503252p. Epub 2014 Nov 17.

Abstract

A novel method for fabricating microsized and nanosized polymer structures from a room-temperature ionic liquid (RTIL) on a Si substrate was developed by the patterned irradiation of an electron beam (EB). An extremely low vapor pressure of the RTIL, 1-allyl-3-ethylimidazolium bis((trifluoromethane)sulfonyl)amide, allows it to be introduced into the high-vacuum chamber of an electron beam apparatus to conduct a radiation-induced polymerization in the nanoregion. We prepared various three-dimensional (3D) micro/nanopolymer structures having high aspect ratios of up to 5 with a resolution of sub-100 nm. In addition, the effects of the irradiation dose and beam current on the physicochemical properties of the deposited polymers were investigated by recording the FT-IR spectra and Young's modulus. Interestingly, the overall shapes of the obtained structures were different from those prepared in our recent study using a focused ion beam (FIB) even if the samples were irradiated in a similar manner. This may be due to the different transmission between the two types of beams as discussed on the basis of the theoretical calculations of the quantum beam trajectories. Perceptions obtained in this study provide facile preparation procedures for the micro/nanostructures.

摘要

通过电子束(EB)的图案化辐照,开发了一种在硅衬底上由室温离子液体(RTIL)制备微米级和纳米级聚合物结构的新方法。RTIL 1-烯丙基-3-乙基咪唑双((三氟甲烷)磺酰)酰胺的极低蒸气压使其能够被引入电子束设备的高真空腔室中,以在纳米区域进行辐射诱导聚合。我们制备了各种高宽比高达 5 且分辨率低于 100 nm 的三维(3D)微/纳米聚合物结构。此外,通过记录傅里叶变换红外光谱(FT-IR)和杨氏模量,研究了辐照剂量和束流对沉积聚合物物理化学性质的影响。有趣的是,即使样品以类似方式辐照,所获得结构的整体形状也与我们最近使用聚焦离子束(FIB)制备的结构不同。这可能是由于基于量子束轨迹的理论计算所讨论的两种束之间的不同透射率。本研究中获得的认识为微/纳米结构提供了简便的制备程序。

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