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A Surface-Functionalized lonovoltaic Device for Probing Ion-Specific Adsorption at the Solid-Liquid Interface

机译:一种表面功能化的光伏装置,用于探测固液界面上的离子特异性吸附

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摘要

Aqueous ion-solid interfacial interactions at an electric double layer (EDL) are studied in various research fields. However, details of the interactions at the EDL are still not fully understood due to complexity induced from the specific conditions of the solid and liquid parts. Several technical tools for ion-solid interfacial probing are experimentally and practically proposed, but they still show limitations in applicability due to the complicated measurements. Recently, an energy conversion device based on ion dynamics (called ionovoltaic device) was also introduced as another monitoring tool for the EDL, showing applicability as a novel probing method for interfacial interactions. Herein, a monitoring technique for specific ion adsorption (Cu2+ and Pb2+ in the range of 5 x 10(-6)-1000 x 10(-6) M) in the solid-liquid interface based on the ionovoltaic device is newly demonstrated. The specific ion adsorption and the corresponding interfacial potentials profiles are also investigated to elucidate a working mechanism of the device. The results give the insight of molecular-level ion adsorption through macroscopic water-motion-induced electricity generation. The simple and cost-effective detection of the device provides an innovative route for monitoring specific adsorption and expandability as a monitoring tool for various solid-liquid interfacial phenomena that are unrevealed.
机译:在各个研究领域中都研究了双电层(EDL)上的水离子-固体界面相互作用。然而,由于固体和液体部分的特定条件引起的复杂性,EDL处的相互作用的细节仍未完全理解。实验上和实践中提出了几种用于离子-固体界面探测的技术工具,但是由于测量复杂,它们在适用性方面仍然显示出局限性。近来,基于离子动力学的能量转换装置(称为电伏装置)也被引入作为EDL的另一种监测工具,显示了作为界面相互作用的新型探测方法的适用性。在本文中,新展示了一种基于离子电伏装置的固液界面中特定离子吸附(Cu2 +和Pb2 +在5 x 10(-6)-1000 x 10(-6)M范围内)的监测技术。还研究了特定的离子吸附和相应的界面电势曲线,以阐明设备的工作机理。结果提供了通过宏观水运动诱导的发电分子水平离子吸附的见解。该设备的简单且经济高效的检测为监测特定的吸附和可扩展性提供了一条创新的途径,可以作为未公开的各种固液界面现象的监测工具。

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