Transient Changes in Conductivity of a Water Solution by Means of an Activated Carboxylic Acid (ACA)

IF 3.1 Q2 CHEMISTRY, MULTIDISCIPLINARY
Dr. Federico Frateloreto, Dr. Giorgio Capocasa, Aurora D'Arrigo, Dr. Martina De Angelis, Prof. Osvaldo Lanzalunga, Prof. Stefano Di Stefano
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引用次数: 0

Abstract

Temporal control of the chemical properties of a molecular system is a main goal of the research focused on dissipative systems, systems chemistry, and smart materials. In this work, we show that nitroacetic acid, a typical activated carboxylic acid (ACA), can be exploited to transiently amplify the electrical conductivity of an aqueous solution. The addition of nitroacetic acid to a water solution induces a transient increase in conductivity, which then decreases over time following the kinetically first order conversion of nitroacetic acid into nitromethane. The rate of the decrease in conductivity can be modulated by varying the temperature or the concentration of an auxiliary base further added to the solution. The time-control of the conductivity is exploited to build a variable resistor which is integrated in simple circuits to operate electrical devices.

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活化羧酸(ACA)对水溶液电导率的瞬态变化
分子系统化学性质的时间控制是耗散系统、系统化学和智能材料研究的主要目标。在这项工作中,我们表明,硝基乙酸,一种典型的活化羧酸(ACA),可以利用瞬时放大水溶液的导电性。在水溶液中加入硝基乙酸会引起电导率的短暂增加,然后随着时间的推移,随着硝基乙酸向硝基甲烷的一级动力学转化,电导率会下降。电导率降低的速率可以通过改变温度或进一步添加到溶液中的辅助碱的浓度来调节。利用电导率的时间控制来构建一个可变电阻器,该电阻器集成在简单电路中以操作电气设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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