未掺杂和掺杂镧铬铁矿选择性激光闪烧的开始

Lezli Matto, Deborah Hagen, Joseph J. Beaman, Desiderio Kovar
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摘要

以往的研究表明,选择性激光闪烧(SLFS)可以在高温下表现出离子或电子传导的介质中引发。这些材料需要高激光功率才能达到足以引发SLFS的导电温度。本文研究了高导电性的本征电子导体镧铬铁矿(LC)和掺杂镧锶铬铁矿(LSC)中的SLFS,重点研究了其引发机制。结果表明,在LC和LSC中,当电子载流子被激活并流向测量电流的电极时,会发生SLFS的起始。在电极上产生的载流子、温度激活的本然载流子和掺杂导致的LSC中存在的外在载流子的组合是SLFS易于引发的原因。这篇文章受版权保护。版权所有
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The onset of selective laser flash sintering in undoped and doped lanthanum chromite

The onset of selective laser flash sintering in undoped and doped lanthanum chromite

Previous studies have shown that selective laser flash sintering (SLFS) can be initiated in dielectrics that exhibit ionic or electronic conduction at high temperature. These materials required high laser powers to reach the temperatures where electrical conduction is sufficient to initiate SLFS. In this study, SLFS in lanthanum chromite (LC), an intrinsic electronic conductor with high conductivity, and lanthanum strontium chromite (LSC), which is doped to further increase electronic conductivity, were investigated with a focus on understanding the initiation mechanisms. Results show that the initiation of SLFS in LC and LSC occurs when electronic charge carriers are activated and flow to the electrode where the current is measured. A combination of carriers produced at the electrode, temperature-activated intrinsic charge carriers, and extrinsic charge carriers present in LSC due to doping are responsible for the facile initiation of SLFS.

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