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Advances and applications of graphitic carbon nitride as sorbent in analytical chemistry for sample pretreatment: A review

机译:石墨氮化碳作为吸附剂在样品前处理分析化学中的研究进展与应用

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As a green and efficient sorbent, graphitic carbon nitride (g-C3N4) with aromatic tri-s-triazine units has shown great potential for the enrichment or removal of metal ions and organic aromatic compounds, which makes it a promising candidate to complement graphenes in analytical chemistry. The in-built N-rich functional groups and electronic delocalization properties endow g-C(3)N(4)with complex sorption mechanism, containing complexion, hydrogen bond, redox reaction, 7t it conjugation, hydrophobic effect, acid -base reaction and electrostatic interaction. The structure and surface physicochemical properties related to the sorption behavior are mainly depended on the preparation and sorption conditions, such as polymerization temperature, polymerization precursors, the solution pH and ionic strength. As a new sorbent, g-C3N4 has been applied to the sample pretreatment in analytical chemistry with solid -phase extraction (SPE), magnetic solid -phase extraction (MSPE), and solid -phase microextraction (SPME) modes, recently. At the same time, a series of modification methods and technologies have been exploited to modify the structural and surface physicochemical properties of g-C3N4, facilitating more effective and selective sorption process. To raise awareness of the superior properties of g-C3N4 and facilitate its applications as a sorbent in analytical chemistry, the sorption properties (sorption mechanism, influence factors of sorption behavior), applications to the sample pretreatment and structural modifications of g-C3N4 are reviewed. (C) 2016 Elsevier B.V. All rights reserved.
机译:作为一种绿色高效的吸附剂,具有芳族三-s-三嗪单元的石墨氮化碳(g-C3N4)在金属离子和有机芳族化合物的富集或去除方面显示出巨大潜力,这使其成为在石墨烯中补充石墨烯的有前途的候选者分析化学。内置的富含N的官能团和电子离域特性赋予gC(3)N(4)具有复杂的吸附机制,包括络合,氢键,氧化还原反应,7t共轭,疏水作用,酸碱反应和静电相互作用。与吸附行为有关的结构和表面物理化学性质主要取决于制备和吸附条件,例如聚合温度,聚合前体,溶液的pH值和离子强度。最近,g-C3N4作为一种新的吸附剂已应用于固相萃取(SPE),磁性固相萃取(MSPE)和固相微萃取(SPME)模式的分析化学中的样品预处理。同时,已经开发了一系列修饰方法和技术来修饰g-C3N4的结构和表面物理化学性质,以促进更有效和选择性的吸附过程。为了提高人们对g-C3N4优异性能的认识并促进其作为分析化学中的吸附剂的应用,对g-C3N4的吸附性能(吸附机理,吸附行为的影响因素),在样品预处理中的应用以及g-C3N4的结构改性进行了综述。 。 (C)2016 Elsevier B.V.保留所有权利。

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