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Electron irradiation of single crystal thorium dioxide and electron transfer reactions

机译:单晶二氧化or的电子辐照和电子转移反应

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This first study of electron irradiation (3 MeV) of single crystals of thoria has revealed that the crystals turn blue, as seen with neutron irradiation, but the absorption profiles in the 12 000-17 260 cm(-1) (1.49-2.14 eV) region were similar but not identical. Calculations showed that the electrons transferred energy sufficient to displace lattice oxygen atoms, but not thorium atoms. The crystals were the purest currently available and supported the proposal that the fundamental absorption edge occurs close to 47 600 cm(-1) (5.9 eV). Theoretically, thoria is colourless and cannot exhibit intervalence bands, but aggregates of impurity ions having more than one oxidation state can produce such bands, and some crystals showed pale amber or grey zones. The most likely impurity involved was lead. The effect of electron irradiation on defect generation after various oxidising and reducing anneals, up to 1000 degrees C, was studied, together with the loss of the blue radiation-induced absorption on isochronal anneals at temperatures up to 400 degrees C. The generated profile could be resolved equally well into three or four Gaussian bands and hence band assignments are not possible. It is concluded that electrons transfer energy to thoria to create defects of shallow energy, and electron transfer involving intervalence bands can occur in the presence of impurity ions. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 16]
机译:这项对of虫单晶的电子辐照(3 MeV)的首次研究表明,如中子辐照所见,晶体变成蓝色,但在12 000-17 260 cm(-1)(1.49-2.14 eV)处的吸收曲线)区域相似但不相同。计算表明,电子传递的能量足以取代晶格中的氧原子,但不能取代th原子。该晶体是目前最纯净的晶体,并支持基本吸收边出现在47 600 cm(-1)(5.9 eV)附近的建议。从理论上讲,氧化ria是无色的,不能显示出间隔带,但是具有一种以上氧化态的杂质离子的聚集体会产生这种带,并且某些晶体显示出淡琥珀色或灰色区域。最可能涉及的杂质是铅。研究了电子辐照对各种氧化和还原退火(高达1000摄氏度)后缺陷产生的影响,以及在高达400摄氏度的温度下等时退火过程中蓝色辐射诱导的吸收的损失。生成的轮廓可以可以很好地分解为三个或四个高斯频带,因此无法进行频带分配。可以得出结论,电子将能量转移到氧化ria上,从而产生浅能缺陷,并且在存在杂质离子的情况下,可能发生包含间隔带的电子转移。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:16]

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