材料科学
钙钛矿(结构)
卤化物
固溶体
光电子学
光电效应
半导体
铁电性
极化(电化学)
居里温度
金属
异质结
电介质
离子
纳米技术
电子能带结构
粒子探测器
焦绿石
探测器
载流子
辐射
带隙
量子隧道
作者
Lijun Xu,Yao Li,Qianwen Guan,Hang Li,Chengshu Zhang,Huang Ye,Haiqing Zhong,Chengmin Ji,Zhenyue Wu,Lina Li,Junhua Luo
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-08-21
卷期号:12 (34)
标识
DOI:10.1126/sciadv.aef7693
摘要
Halide double perovskite ferroelectrics have recently emerged as an environmentally friendly candidate in radiation detection, photovoltaics, and optoelectronic memory devices due to their unique spontaneous polarization and semiconductor properties. However, it is a huge challenge to achieve efficient carrier transport and high Curie temperature ( T c ) in double perovskite ferroelectrics, owing to the limitations of twisted frameworks and structural construction. Here, we present a high- T c heterovalent metal solid solution double perovskite ferroelectric, (4Br2FBZ) 2 CsAgBiBr 7 (4Br2FBZ-CAB, 4Br2FBZ = 4-bromo-2-fluorobenzylammonium), through a strategy of cation-engineered symmetry regulation. The metal ions Ag and Bi transitioned from an alternating arrangement to a mixed-site solid solution pattern, effectively optimizing the electronic band structure to enhance carrier transport. Meanwhile, 4Br2FBZ-CAB exhibits a high T c of 484 kelvin, substantially expanding the family of high- T c lead-free ferroelectrics. Benefiting from its remarkable photoelectric and ferroelectric properties, a high self-powered x-ray detection sensitivity of 273.8 microcoulomb per gray per square centimeter (μC Gy air −1 cm −2 ) was achieved at room temperature. In addition, this exceptionally high T c enables the detector to operate self-powered at high temperatures, resulting in an excellent sensitivity of 896.9 μC Gy air −1 cm −2 and a low detection limit of 13.9 nGy air s −1 at 425 kelvin. This work opens an avenue for expanding the family of high- T c lead-free perovskite ferroelectrics with superior semiconducting properties.
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