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热微电极

Hot microelectrodes.

作者信息

Baranski Andrzej S

机构信息

Department of Chemistry, University of Saskatchewan, Saskatoon, Canada.

出版信息

Anal Chem. 2002 Mar 15;74(6):1294-301. doi: 10.1021/ac015659h.

Abstract

Heat generation at disk microelectrodes by a high-amplitude (few volt) and high-frequency (0.1-2 GHz) alternating voltage is described. This method allows changing electrode temperature very rapidly and maintaining it well above the boiling point of solution for a very long time without any indication of boiling. The size of the hot zone in solution is determined by the radius of the electrode. There is no obvious limit in regard to the electrode size, so theoretically, by this method, it should be possible to create hot spots that are much smaller than those created with laser beams. That could lead to potential applications in medicine and biology. The heat-generating waveform does not electrically interfere with normal electroanalytical measurements. The noise level at hot microelectrodes is only slightly higher, as compared to normal microelectodes, but diffusion-controlled currents at hot microelectrodes may be up to 7 times higher, and an enhancement of kinetically controlled currents may be even larger. Hot microelectrodes can be used for end-column detection in capillary electrophoresis and for in-line or in vivo analyses. Temperature gradients at hot microelectrodes may exceed 1.5 x 10(5) K/cm, which makes them useful in studies of Soret diffusion and thermoelectric phenomena.

摘要

描述了通过高振幅(几伏)和高频(0.1 - 2 GHz)交变电压在圆盘微电极上产生热量的情况。这种方法能够非常迅速地改变电极温度,并在很长时间内将其维持在远高于溶液沸点的水平,且没有任何沸腾迹象。溶液中热区的大小由电极半径决定。电极尺寸方面没有明显限制,所以理论上,通过这种方法应该能够制造出比用激光束制造的热点小得多的热点。这可能会在医学和生物学领域带来潜在应用。发热波形不会对正常的电分析测量产生电干扰。与普通微电极相比,热微电极处的噪声水平仅略高,但热微电极处的扩散控制电流可能高达7倍,而动力学控制电流的增强可能更大。热微电极可用于毛细管电泳中的柱端检测以及在线或体内分析。热微电极处的温度梯度可能超过1.5×10⁵ K/cm,这使得它们在索雷特扩散和热电现象的研究中很有用。

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