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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Matrix-Assisted Pulsed Laser Evaporation: A novel approach to design mesoporous carbon films
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Matrix-Assisted Pulsed Laser Evaporation: A novel approach to design mesoporous carbon films

机译:矩阵辅助脉冲激光蒸发:一种设计中孔碳膜的新方法

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摘要

We report on a fast synthesis method of porous carbon films on solid substrates. Thin carbon microstructures tailored by processing conditions were synthesized for the first time by Matrix-Assisted Pulsed Laser Evaporation. The procedure consists of pulsed laser irradiation of a cryogenic target composed of phloroglucinol/glyoxylic acid organic precursors dissolved in different mixtures of solvents. An excimer UV KrF* pulsed laser was employed inside a vacuum chamber for material expulsion from the target and immobilization on a solid facing collector. By modifying laser energy or target solvents, thin polymeric coatings of hundreds of nanometers with various cross-linking degrees were obtained at room temperature in 10 min only. No drying or thermo-polymerization step is required even for high boiling point solvents such as dymethyl sulfoxide (DMSO). After thermal treatment, mesoporous carbon films exhibiting diverse nano-morphologies and surface areas up to 705 m(2) g(-1) determined by Kr adsorption were then directly obtained onto various collectors. Processing and assembling mechanisms of phenolic resins were investigated and two competing mechanisms, e.g., target absorption of laser wavelength and subsequent molecules transfer/interactions are accounted for the growth of high quality films as highlighted by several techniques. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们报道了固体衬底上多孔碳膜的快速合成方法。通过基质辅助脉冲激光蒸发首次合成通过加工条件裁定的薄碳微观结构。该方法由脉冲激光照射的低温靶标的由甘油蛋白/乙醛酸有机前体组成,溶于溶于溶剂的不同混合物。在真空室内采用准分子UV KRF *脉冲激光器,用于从靶和固定在坚固的收集器上的物质驱逐。通过改变激光能量或靶溶剂,仅在室温下仅在10分钟内获得数百纳米具有各种交联度的薄聚合物涂层。甚至对于高沸点溶剂如Dymethyl磺氧化物(DMSO),也不需要干燥或热聚合步骤。热处理后,将展示不同纳米形态的介孔碳膜和高达705μg(2)克(-1)的表面积,然后直接获得在各种收集器上。研究了酚醛树脂的加工和组装机制,并且两种竞争机制,例如,激光波长和随后的分子转移/相互作用的靶吸收机制被占高质量薄膜的生长,如几种技术所突出的。 (c)2017 Elsevier Ltd.保留所有权利。

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