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New multifunctional porous materials based on inorganic-organic hybrid single-walled carbon nanotubes: Gas storage and high-sensitive detection of pesticides

机译:基于无机-有机杂化单壁碳纳米管的新型多功能多孔材料:气体存储和农药的高灵敏度检测

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摘要

Single-walled carbon nanotubes (SWNTs) that are covalently functionalized with benzoic acid (SWNT-PhCOOH) can be integrated with transition-metal ions to form 3D porous inorganic-organic hybrid frameworks (SWNT-Zn). In particular, N_2-adsorption analysis shows that the BET surface area increases notably from 645.3 to 1209.9 m~2 g~(-1) for SWNTs and SWNT-Zn, respectively. This remarkable enhancement in the surface area of SWNT-Zn is presumably due to the microporous motifs from benzoates coordinated to intercalated zinc ions between the functionalized SWNTs; this assignment was also corroborated by NLDFT pore-size distributions. In addition, the excess-H_2-uptake maximum of SWNT-Zn reaches about 3.1 wt. % (12 bar, 77 K), which is almost three times that of the original SWNTs (1.2 wt. % at 12 bar, 77 K). Owing to its inherent conductivity and pore structure, as well as good dispersibility, SWNT-Zn is an effective candidate as a sensitive electrochemical stripping voltammetric sensor for organophosphate pesticides (OPs): By using solid-phase extraction (SPE) with SWNT-Zn-modified glassy carbon electrode, the detection limit of methyl parathion (MP) is 2.3 ng mL ~(-1).
机译:可以将用苯甲酸(SWNT-PhCOOH)共价官能化的单壁碳纳米管(SWNT)与过渡金属离子结合形成3D多孔无机-有机杂化骨架(SWNT-Zn)。尤其是N_2吸附分析表明,SWNTs和SWNT-Zn的BET表面积分别从645.3增加到1209.9 m〜2 g〜(-1)。 SWNT-Zn表面积的这种显着提高,可能是由于苯甲酸酯的微孔基序与官能化的SWNT之间的嵌入锌离子配位。 NLDFT孔径分布也证实了这一任务。另外,SWNT-Zn的过量H 2-吸收最大值达到约3.1重量%。 %(12 bar,77 K),几乎是原始SWNTs(12 bar,77 K在1.2 wt。%)的三倍。由于其固有的电导率和孔结构以及良好的分散性,SWNT-Zn是用作有机磷酸盐农药(OPs)的灵敏电化学溶出伏安传感器的有效候选者:通过将固相萃取(SPE)与SWNT-Zn-修饰的玻碳电极,甲基对硫磷(MP)的检出限为2.3 ng mL〜(-1)。

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