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首页> 外文期刊>Angewandte Chemie >Subsurface Space-Charge Dopant Segregation to Compensate Surface Excess Charge in a Perovskite Oxide
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Subsurface Space-Charge Dopant Segregation to Compensate Surface Excess Charge in a Perovskite Oxide

机译:地下空间电荷掺杂剂的分离,以补偿钙钛矿氧化物中的表面过量电荷。

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摘要

Since the first prediction by Frenkel, many follow-up studies have been carried out to show the presence of subsurface space-charge layers having the opposite sign to that of the excess charge at the surface, producing overall neutrality in ionic crystals. However, no precise experimental evidence demonstrating how the aliovalent solutes segregate in the space-charge region beneath the surface has been provided over the past several decades. By utilizing atomic-scale imaging and chemical probing in a perovskite oxide, the origin of the surface excess charge at the topmost surface and the position of segregated dopants in the space-charge region is precisely determined. The impact of the space-charge contribution to the dopant distribution near the surface in oxide crystals is explored.
机译:自从Frenkel做出第一个预测以来,已经进行了许多后续研究,以显示存在与表面过量电荷具有相反符号的地下空间电荷层,从而在离子晶体中产生总体中性。然而,在过去的几十年中,没有提供精确的实验证据来证明铝价溶质如何在表面之下的空间电荷区域中分离。通过在钙钛矿氧化物中利用原子尺度成像和化学探测,可以精确确定最表面上的表面多余电荷的起源以及空间电荷区域中分离的掺杂剂的位置。探索了空间电荷对氧化物晶体中表面附近掺杂物分布的影响。

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