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Bismuth chalcohalide-based nanocomposite for application in ionising radiation detectors

机译:基于铋基硫脲基纳米复合材料用于电离辐射探测器

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摘要

Bismuth sulpho iodide (BiSI) belongs to the family of chalcohalides, which present several attractive electro-optic properties. In particular, BiSI is a semiconductor which could be used in X and gamma ray detection due to a band gap of 1.6 eV, density of 6.4 g cm(-3), and absorption coefficient for 60 keV radiation of 5.6 cm(2) g(-1). This work presents a facile synthesis under solvothermal conditions of a nanocomposite consisting of BiSI nanorods and amorphous carbon structures. Furthermore, it studies its ionising radiation detection properties at room temperature, when prototype detectors were built from pellets. The construction conditions of pellets were also studied, varying the applied pressure and heat treatment to the nanocomposite. Dark current density and response to different exposure rates of a Am-241 source were measured for the prototype detectors built. It was found that heat treatment of pellets considerably improves detectors performance. Dark current density was one order of magnitude lower than for the pellets without heat treatment, and its response to the Am-241 source, linear, with a signal to noise ratio of 7 for 20 V. Finally, the resistivity for the heat treated detector was in the order of 10(11) omega cm, comparable to other materials studied for this application.
机译:苯铋碘化物(BISI)属于核心核苷酸家族,其具有几种有吸引力的电光特性。特别地,BISI是一种半导体,其由于1.6eV的带隙,密度为6.4g cm(-3),吸收系数为5.6cm(2)g (-1)。该作品在由BISI纳米棒和非晶碳结构组成的纳米复合材料的溶剂热条件下呈现容易合成。此外,当原型探测器由颗粒构建时,它在室温下进行电离辐射检测性能。还研究了颗粒的施工条件,改变施加的压力和对纳米复合材料的热处理。为构建的原型探测器测量了暗电流密度和对AM-241源源的不同曝光率的响应。发现颗粒的热处理显着改善了探测器性能。暗电流密度比没有热处理的颗粒低一种数量级,其对AM-241源的响应线性,信号到20V的信号到噪声比为7。最后,热处理探测器的电阻率大约为10(11)欧米加厘米,可与本申请研究的其他材料相媲美。

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