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首页> 外文期刊>Journal of Physics. Condensed Matter >Multifrequency electron paramagnetic resonance and electron-nuclear double-resonance studies of photo-hole processes in AgBr and AgCl emulsion grains
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Multifrequency electron paramagnetic resonance and electron-nuclear double-resonance studies of photo-hole processes in AgBr and AgCl emulsion grains

机译:AgBr和AgCl乳剂颗粒中光洞过程的多频电子顺磁共振和电子核双共振研究

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摘要

By using a combination of multifrequency EPR spectroscopy, ENDOR spectroscopy and calculations of structure and energy, the reactivities of photo-generated holes in microcrystalline AgBr and AgCl dispersions (photographic emulsions) have been followed in detail. Progress has been facilitated by the use of both gelatin and polyvinyl alcohol (PVA) as peptizers. The initial trapped hole centres produced by band-gap excitation have been identified. In AgBr, this species is [(Br-4)(3-).V], a neutral complex formed from hole trapping by the four nearest neighbours of a surface Ag+ vacancy (=V). [(Br-4)(3-).V] reacts with gelatin to produce a transient organic radical at the grain's surface. It does not, however, react with PVA. The formation of the oxidized gelatin radical might involve atomic bromine as an intermediate. In AgCl, the well-known self-trapped hole centre (AgCl6)(4-) is me initial hole species. The hole diffuses by an electron exchange process until it is trapped by a silver ion on the grain's surface or within its penultimate layer of lattice ions. It is subsequently released from this Ag2+ site to be retrapped at a centre containing four equivalent Cl- ions. The precise identity of this defect has yet to be determined, but its decay also results in the oxidation of gelatin. [References: 34]
机译:通过结合多频EPR光谱,ENDOR光谱以及结构和能量的计算,已经详细跟踪了微晶AgBr和AgCl分散体(照相乳剂)中光生空穴的反应性。明胶和聚乙烯醇(PVA)的使用都促进了进步。已经确定了由带隙激发产生的初始陷阱孔中心。在AgBr中,该物种为[(Br-4)(3-)。V],这是一种由表面Ag +空位(= V)的四个最近邻居捕获的空穴形成的中性络合物。 [(Br-4)(3-)。V]与明胶反应,在谷物表面产生瞬态有机自由基。但是,它不会与PVA反应。氧化明胶自由基的形成可能涉及原子溴作为中间体。在AgCl中,众所周知的自陷孔中心(AgCl6)(4-)是我的初始孔种类。空穴通过电子交换过程扩散,直到被颗粒表面或其倒数第二个晶格离子层中的银离子俘获。随后将其从该Ag2 +部位释放出来,重新捕获在一个包含四个等效Cl-离子的中心。该缺陷的确切身份尚待确定,但其衰减也会导致明胶氧化。 [参考:34]

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