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首页> 外文期刊>Analytical chemistry >Thermal Modulation Voltammetry with Laser Heating at an AqueousNitrobenzene Solution Microinterface: Determination of the Standard Entropy Changes of Transfer for Tetraalkylammonium Ions
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Thermal Modulation Voltammetry with Laser Heating at an AqueousNitrobenzene Solution Microinterface: Determination of the Standard Entropy Changes of Transfer for Tetraalkylammonium Ions

机译:水性激光加热的热调制伏安法硝基苯溶液微界面:四烷基铵离子转移标准熵变的测定

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Thermal modulation voltammetry (TMV) with laser heating was successfully performed at an aqueousnitrobenzene (NB) solution microinterface, by taking advantage of the fact that laser light with a wavelength of 325.0 nm is optically transparent to the aqueous solution but opaque to the NB solution. When the laser beam impinges upon the interface from the aqueous solution side, a temperature is raised around the interface through the thermal diffusion subsequent to the light-to-heat conversion following the optical absorption by the NB solution near the interface. Based on such a principle, we achieved a fluctuating temperature perturbation around the interface for TMV by periodically irradiating the interface with the laser beam. On the other hand, the fluctuating temperature perturbation has influence on currents for transfer of an ion across the interface to produce fluctuating currents synchronized with the perturbation through temperature coefficients of several variables concerning the transfer, such as the standard transfer potential and the diffusion coefficient of the ion. Consequently, TMV has the possibility of providing information about the standard entropy change of transfer corresponding to a temperature coefficient of the standard transfer potential and a temperature coefficient of the diffusion coefficient. In this work, the aqueousNB solution interface of 30 (mu)m in diameter was irradiated with the laser beam at 10 Hz, and the currents synchronized with the periodical irradiation were recorded as a function of the potential difference across the interface in order to construct a TM voltammogram. TM voltammograms were measured for transfer of tetramethylammonium, tetraethylammonium, tetrapro-pylammonium, and tetra-n-butylammonium ions from the aqueous solution to the NB solution, and the standard entropy change of transfer was determined for each ion, according to an analytical procedure based on a mathematical expression of the TM voltammogram. Comparison of the values obtained in this work with the literature values has proved that TMV with laser heating is available for the determination of the standard entropy change of transfer for an ion.
机译:利用波长为325.0 nm的激光对水溶液具有光学透明性,但对NB溶液不透明这一事实,在硝基苯(NB)水溶液微界面上成功地进行了激光加热的热调制伏安法(TMV)。当激光束从水溶液侧撞击界面时,在界面附近的NB溶液吸收光学后,光热转换之后,通过热扩散在界面周围升高温度。基于这样的原理,我们通过周期性地用激光束照射界面,实现了TMV界面周围的温度波动。另一方面,波动的温度扰动对离子在界面上转移的电流有影响,从而通过与转移有关的几个变量的温度系数(例如离子的标准转移电位和扩散系数)产生与扰动同步的波动电流。因此,TMV有可能提供有关标准转移熵变化的信息,该信息对应于标准转移电位的温度系数和扩散系数的温度系数。本文以10 Hz的激光束照射直径为30 (μ)m的水溶液界面,记录与周期性辐照同步的电流作为界面电位差的函数,以构建TM伏安图。测量四甲基铵、四乙基铵、四丙吡啶和四正丁基铵离子从水溶液转移到NB溶液的TM伏安图,并根据基于TM伏安图数学表达式的分析程序确定每个离子的标准转移熵变化。将本工作中获得的值与文献值进行比较,证明激光加热的TMV可用于确定离子转移的标准熵变化。

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