首页> 外文期刊>Journal of Physics. Condensed Matter >Oriented silver chloride microcrystals and nanocrystals embedded in a crystalline KCl matrix, as studied by means of electron paramagnetic resonance and optically detected magnetic resonance
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Oriented silver chloride microcrystals and nanocrystals embedded in a crystalline KCl matrix, as studied by means of electron paramagnetic resonance and optically detected magnetic resonance

机译:通过电子顺磁共振和光学检测的磁共振研究了取向的氯化银微晶和纳米晶嵌入KCl晶体中

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Self-trapped holes (STH), self-trapped excitons (STE) and shallow electron centres in small AgCl crystals embedded in a KCl crystalline matrix have been observed by means of optically detected magnetic resonance (ODMR). The existence of the impurity clusters in heavily doped KCl:AgCl single crystals, ranging from single and paired Ag ions to AgCl nanometre- and micrometresize crystals (nanocrystals and microcrystals) retaining the orientation of the matrix, was confirmed. ODMR spectra were used as a fingerprint of the embedded AgCl microcrystals and a signature of their crystallinity. For AgCl nanocrystals the anisotropy of the g-factor both for isolated STH and for STH forming STE was found to be substantially reduced compared with those of bulk AgCl crystals and AgCl microcrystals embedded in KCl. This implies a considerable suppression of the Jahn-Teller effect in nanoparticles. A rather general mechanism of the suppression of the Jahn-Teller effect in nanocrystals is developed, taking into account the additional deformation field appearing because of the strong vibronic interaction at the interface. It allows evaluation of the critical size of the embedded AgCl nanocrystals, at which the suppression of the Jahn-Teller effect has its onset; the value obtained is approximate to 10 nm, in agreement with experiment. [References: 31]
机译:通过光学检测磁共振(ODMR)观察到嵌入在KCl晶体基质中的小AgCl晶体中的自陷空穴(STH),自陷激子(STE)和浅电子中心。证实了在重掺杂的KCl:AgCl单晶中存在杂质簇,其范围从单个和成对的Ag离子到保留基质方向的AgCl纳米和微米级晶体(纳米晶体和微晶体)。 ODMR光谱用作嵌入的AgCl微晶的指纹和其结晶度的标志。对于AgCl纳米晶体,发现与分离的STH和形成STH的STE相比,g因子的各向异性与嵌入AgCl中的块状AgCl晶体和AgCl微晶体相比大大降低了。这暗示了纳米颗粒中Jahn-Teller效应的显着抑制。考虑到由于界面处强烈的振动相互作用而出现的附加形变场,因此开发了一种抑制纳米晶体中Jahn-Teller效应的相当普遍的机制。它可以评估嵌入的AgCl纳米晶体的临界尺寸,在该尺寸处会抑制Jahn-Teller效应。得到的值与实验一致,约为10nm。 [参考:31]

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