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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Deep eutectic solvents as active media for the preparation of highly conducting 3D free-standing PANI xerogels and their derived N-doped and N-, P-codoped porous carbons
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Deep eutectic solvents as active media for the preparation of highly conducting 3D free-standing PANI xerogels and their derived N-doped and N-, P-codoped porous carbons

机译:深度共晶溶剂作为活性培养基,用于制备高度导电的3D立式PANI Xerogels及其衍生的N-掺杂和N-,P-,P-Codoped多孔碳

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This work reports on the preparation of PANI in the form of highly conducting free-standing xerogels by controlling the synthetic process from the selection of precursors and cross-linkers to the dopant acid. This novel synthesis was carried out using polymerizable deep eutectic solvents (DESs) composed of anilinium chloride (AHCl) as hydrogen bond acceptor and ethylene glycol, glycerol or glycolic acid as hydrogen bond donors in the absence of any further solvent. The addition of p-phenylenediamine and a post-synthetic cross-linking process allowed the achievement of structurally stable xerogels by avoiding the occurrence of microscopic cracks during drying while preserving a suitable oxidation state and doping level. These features were critical to obtain PANI xerogels with a remarkably high electrical conductivity of ca. 1.17 S cm(-1). Finally, given the intrinsic nitrogen content of PANI xerogels and phosphorus content resulting from cross-linking with phytic acid, some of these samples were carbonized to produce monolithic N-doped and N, P-codoped porous carbons, which were found to be suitable catalysts for the oxygen reduction reaction via a nearly-four-electron mechanism. (C) 2019 Elsevier Ltd. All rights reserved.
机译:该工作通过将合成方法从选择前体和交联剂与掺杂剂酸的选择来控制,通过对掺杂剂酸的选择来制备PANI的制备。使用由氯化苯胺(AHCl)组成的聚合深共晶溶剂(DESS)作为氢粘合受体和乙二醇,甘油或乙二醇作为氢键供体在不存在任何其他溶剂的情况下进行这种新的合成。通过避免在干燥过程中避免干燥过程中的微观裂缝而产生结构稳定的交联过程的加入,允许在结构稳定的交联过程中实现。这些特征对于获得PANI Xerogels,具有显着高的CA电导率至关重要。 1.17 S cm(-1)。最后,鉴于Pani Xerogels的固有氮含量和由与植酸交联引起的磷含量和磷含量,其中一些样品被碳化以产生整体型N-掺杂的,并且发现该样品是合适的催化剂用于通过近四电子机构的氧还原反应。 (c)2019年elestvier有限公司保留所有权利。

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