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Ion Sieving Effects in the Electrical Double Layer of Porous Carbon Electrodes: Estimating Effective Ion Size in Electrolytic Solutions

机译:多孔碳电极双电层中的离子筛分效应:估算电解溶液中的有效离子尺寸

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Certain microporous carbons have pores of molecular dimensions, the size of which can be adjusted over a wide range to fit the dimensions of a large variety of molecules. With knowing the dimensions of these molecules, size-calibrated porous carbons can be produced. In this work, we took advantage of the electronic conductivity of carbon in using it as an electrode in electrolytic solutions. By changing the electrode potential, we could induce electroadsorption and electrodesorption of ions of different dimensions into pore-calibrated carbons, thus enabling us to estimate effective ion sizes. A few fundamental questions such as whether ions accommodated in the electrodes' pores are in a solvated state, which is important for novel electrochemical energy storage devices and for microbiological systems, could be addressed. Analysis of the results indicates that all the cations that are employed are electroadsorbed in the electrode pores in hydrated states. Compared with the monovalent cations, the bivalent cations exhibit dimensions that make them almost twice as big. Monovalent anions are basically adsorbed in a nonhydrated state. The doubly charged sulfate anion is adsorbed in the hydrated state. The nitrate, a multiatom planar anion, has a smaller effective dimension than the monoatomic halogen anions, in accordance with the observation that the pores in many activated carbons are slit-shaped. The analysis of the results enabled us to establish a scale of ionic effective dimensions in aqueous media, as presented below (MTBE stands for methyl tert-butyl ether): cations, [3.62 A, N_2] < Cs~+ < K~+ < Na~+ < Li~+ [4.21 A, CF_4] < [5.05 A, SF_6] < [5.8 A, MTBE] < Ba~(2+), Ca~(2+), and Mg~(2+); anions, [3.62 A, N_2] < NO_3~- < Cl~- < F~- < Br~- < [4.21 A, CF_4] < ClO_4~- < [5.05 A, SF_6] < [5.8 A, MTBE] < SO~(2-). We discovered that as long as the pore size is considerably greater than the ion size, the electric double-layer capacity at moderate concentrations is independent of both the size and charge of the ions in solutions.
机译:某些微孔碳具有分子尺寸的孔,其尺寸可在宽范围内调节以适合多种分子的尺寸。在知道这些分子的尺寸的情况下,可以生产尺寸校准的多孔碳。在这项工作中,我们利用碳的电子导电性将其用作电解液中的电极。通过改变电极电势,我们可以将不同尺寸的离子电吸附和电吸附到孔校准的碳中,从而使我们能够估算有效的离子尺寸。可以解决一些基本问题,例如容纳在电极孔中的离子是否处于溶剂化状态,这对于新型电化学储能装置和微生物系统很重要。结果分析表明,所使用的所有阳离子均以水合状态电吸附在电极孔中。与一价阳离子相比,二价阳离子的尺寸使其几乎是原来的两倍。一价阴离子基本上以非水合状态吸附。双电荷的硫酸根阴离子以水合状态被吸附。根据观察,许多活性炭中的孔隙呈狭缝状,硝酸根是一种多原子平面阴离子,其有效尺寸小于单原子卤素阴离子。结果分析使我们能够建立水介质中离子有效尺寸的尺度,如下所示(MTBE代表甲基叔丁基醚):阳离子,[3.62 A,N_2]

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