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首页> 外文期刊>RSC Advances >'Light-assisted evaporation induced self-assembly': an efficient approach toward ordered carbon materials
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'Light-assisted evaporation induced self-assembly': an efficient approach toward ordered carbon materials

机译:“光辅助蒸发诱导的自组装”:一种有序碳材料的有效方法

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摘要

The synthesis of ordered porous carbons by a green, simple and rapid approach based on light exposure of a solution of carbon precursors and a soft-template in the presence or not of a photosensitizer is demonstrated herein along with their formation mechanism. The influence of the benzophenone amount on the formation of phenolic resin and the carbon structure, morphology and textural properties was systematically studied. The polymerization, self-assembly and carbonization are promoted in the same step by light. The benzophenone accelerates several times the reaction rate modifying mainly the phenolic-resin structure (higher degree of cross-linking and carbonization) via radical formation, as highlighted by Raman spectroscopy. In addition, the increase of benzophenone amount gradually induces the modification of carbon morphology from a worm-like disordered structure to a highly organized hexagonal one while the surface area and pore volume remain unchanged. The C-13 and H-1 solid state and relaxation NMR analysis pointed out that this behavior is triggered by the different micellar structuration of the template in the presence of benzophenone, the phenolic-resin composition involving only carbon precursor derived compounds and not benzophenone.
机译:本文展示了通过绿色,简单,快速的方法,基于在光敏剂存在与否的情况下碳前体溶液和软模板的曝光,合成有序多孔碳及其形成机理。系统地研究了二苯甲酮的量对酚醛树脂的形成以及碳结构,形态和织构性质的影响。光在同一步骤中促进了聚合,自组装和碳化。如拉曼光谱法所强调的那样,二苯甲酮通过基团的形成将反应速率加速了数倍,主要改变了酚醛树脂的结构(较高的交联度和碳化度)。此外,二苯甲酮数量的增加逐渐引起碳形态从蠕虫状无序结构变为高度组织化的六边形结构,而表面积和孔体积保持不变。 C-13和H-1固态和弛豫NMR分析指出,这种行为是由二苯甲酮存在下模板的不同胶束结构触发的。二苯甲酮是仅由碳前体衍生的化合物而不含二苯甲酮的酚醛树脂组合物。

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