材料科学
中子
中子探测
中子温度
光电子学
半导体
粒子探测器
探测器
俘获
光学
核物理学
生态学
物理
生物
作者
Ziwan Du,Yuxuan Lai,Ruirong Bai,Bolun Wang,Qiang Zheng,Chuan Xu,Teng Lü,Jun Pei,Wei Li,Yu‐Ning Wu,Kai Liu,Yun Liu,Engang Fu,Jing‐Feng Li,Yigang Yang,Qian Li
标识
DOI:10.1002/adma.202212213
摘要
Direct neutron detection based on semiconductor crystals holds promise to transform current neutron detector technologies and further boosts their widespread applications. It is, however, long impeded by the dearth of suitable materials in the form of sizeable bulk crystals. Here, high-quality centimeter-sized LiInP2 Se6 single crystals are developed using the Bridgman method and their structure and property characteristics are systematically investigated. The prototype detectors fabricated from the crystals demonstrate an energy resolution of 53.7% in response to α-particles generated from an 241 Am source and robust, well-defined response spectra to thermal neutrons that exhibit no polarization or degradation effects under prolonged neutron/γ-ray irradiation. The primary mechanisms of Se-vacancy and InLi antisite defects in the carrier trapping process are also identified. Such insights are critical for further enhancing the energy resolution of LiInP2 Se6 bulk crystals toward the intrinsic level (≈8.6% as indicated by the chemical vapor transport-grown thin crystals). These results pave the way for practically adopting LiInP2 Se6 single crystals in new-generation solid-state neutron detectors.
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