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Development of Anion Stereoselective, Activated Carbon Molecular Sieve Electrodes Prepared by Chemical Vapor Deposition

机译:化学气相沉积制备阴离子立体选择性活性炭分子筛电极的开发

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The electrochemical properties of nanoporous, activated carbon cloth electrodes in NaCl and NaNO3 solutions were investigated before and after carbon chemical vapor deposition (CVD) on the high surface area of nanoporous carbon samples. Different CVD reagents, temperatures, and pressures were employed. We achieved a sharp ion sieving effect for CDV-treated carbon samples/electrodes by selecting a given CVD reagent (namely, benzene) and a temperature that was too low to affect chemical decomposition of benzene in the gaseous phase, but sufficiently high to enable its decomposition on the outer surface of the carbon substrate, to form surface carbon deposits. The electroadsorption stereo selectivity achieved by optimized CVD treatment was so sharp that clear discrimination could be obtained even between anions of very similar dimensions, such as Cl~- and NO_3~-. Here, the nitrate behaves as the smaller entity since, being a planar ion, it fits better into the carbon micropores known to have slit-shaped pores. The CVD treatment affects mainly the mouths of the pores and not their interior/volume. This was proven by adsorption experiments. From the gas phase, the stereoselectivity obtained by these CVD treatments was also demonstrated by discrimination between the adsorption of CO2 and N2 into the CVD-treated activated carbon.
机译:在纳米多孔碳样品的高表面积上进行化学气相沉积(CVD)之前和之后,研究了NaCl和NaNO3溶液中纳米多孔活性炭布电极的电化学性能。使用了不同的CVD试剂,温度和压力。通过选择给定的CVD试剂(即苯)和温度太低以至于不能影响气相中苯的化学分解,但又足够高的温度使它能够被CDV处理的碳样品/电极,我们实现了明显的离子筛分效果。在碳基底的外表面上分解,形成表面碳沉积物。通过优化的CVD处理获得的电吸附立体选择性如此之高,以至于即使在尺寸非常相似的阴离子(例如Cl〜-和NO_3〜-)之间也能获得清晰的分辨力。在此,硝酸盐表现为较小的实体,因为它是平面离子,因此更适合于已知具有狭缝形孔的碳微孔中。 CVD处理主要影响孔口,而不影响其内部/体积。吸附实验证明了这一点。从气相中,通过区分在经CVD处理的活性炭中CO 2和N 2的吸附,也证明了通过这些CVD处理获得的立体选择性。

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