首页> 美国卫生研究院文献>Nanomaterials >A2AgCrBr6 (A = K Rb Cs) and Cs2AgCrX6(X = Cl I) Double Perovskites: A Transition-Metal-Based Semiconducting Material Series with Remarkable Optics
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A2AgCrBr6 (A = K Rb Cs) and Cs2AgCrX6(X = Cl I) Double Perovskites: A Transition-Metal-Based Semiconducting Material Series with Remarkable Optics

机译:A2AGCRBR6(A = KRBCS)和CS2AGCRX6(X = CLI)双钙钛矿:一种过渡金属的半导体系列具有显着光学器件

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摘要

With an interest to quest for transition metal-based halogenated double perovskites AB′B″X6 as high performance semiconducting materials for optoelectronics, this study theoretically examined the electronic structures, stability, electronic (density of states and band structures), transport (effective masses of charge carriers), and optical properties (dielectric function and absorption coefficients, etc.) of the series A2AgCrBr6 (A = K, Rb, Cs) using SCAN + rVV10. Our results showed that A2AgCrBr6 (A = Rb, Cs), but not K2AgCrBr6, has a stable perovskite structure, which was revealed using various traditionally recommended geometry-based indices. Despite this reservation, all the three systems were shown to have similar band structures, density of states, and carrier effective masses of conducting holes and electrons, as well as the nature of the real and imaginary parts of their dielectric function, absorption coefficient, refractive index, and photoconductivity spectra. The small changes observed in any specific property of the series A2AgCrBr6 were due to the changes in the lattice properties driven by alkali substitution at the A site. A comparison with the corresponding properties of Cs2AgCrX6 (X = Cl, I) suggested that halogen substitution at the X-site can not only significantly shift the position of the onset of optical absorption found of the dielectric function, absorption coefficient and refractive spectra of Cs2AgCrCl6 and Cs2AgCrI6 toward the high- and low-energy infrared regions, respectively; but that it is also responsible in modifying their stability, electronic, transport, and optical absorption preferences. The large value of the high frequency dielectric constants—together with the appreciable magnitude of absorption coefficients and refractive indices, small values of effective masses of conducting electrons and holes, and the indirect nature of the bandgap transitions, among others—suggested that cubic A2AgCrBr6 (A = Rb, Cs) and Cs2AgCrCl6 may likely be a set of optoelectronic materials for subsequent experimental characterizations.
机译:旨在追求过渡金属的卤化双钙耐力AB'B“X6作为光电子的高性能半导体材料,本研究理论上地检查了电子结构,稳定性,电子(状态和带结构密度),运输(有效质量使用扫描+ RVV10的串联A2AGCRBR6(A = K,RB,CS)的电荷载体和光学性质(介电函数和吸收系数等)。我们的结果表明,A2AGCRBR6(A = RB,CS)但不是K2AGCRBR6具有稳定的钙钛矿结构,该结构揭示了使用各种传统推荐的基于几何索引。尽管进行了预约,所示的所有三种系统都被证明具有类似的频带结构,状态密度和载体有效质量的导电孔和电子,以及其介质功能的实部和虚部的性质,吸收系数,折射索引和光电导光谱。在A2AGCRBR6系列的任何特定性质中观察到的少量变化是由于碱替代在部位的晶格特性的变化。与CS2AGCRX6(X = CL,I)相应性质的比较表明X位点处的卤素取代不仅可以显着地移位发现的介质功能,吸收系数和CS2AGCR6的吸收系数和折射光谱的位置的位置和CS2AGCRI6分别朝向高能和低能量红外区域;但是,它还负责修改其稳定性,电子,运输和光学吸收偏好。高频介电常数的大值与吸收系数的明显大小和折射率,导电电子和孔的有效质量的小值以及带隙转变的间接性质 - 建议立方A2AGCRBR6( A = RB,CS)和CS2AGCRCL6可能是用于随后的实验表征的一组光电材料。

著录项

  • 期刊名称 Nanomaterials
  • 作者

    Pradeep R. Varadwaj;

  • 作者单位
  • 年(卷),期 2020(10),5
  • 年度 2020
  • 页码 973
  • 总页数 21
  • 原文格式 PDF
  • 正文语种
  • 中图分类 生化遗传学;生化药理学;
  • 关键词

    机译:卤化物双钙质;铬的影响;稳定性;DOS和带结构;运输和光学性质;DFT研究;

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