首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Physical and optoelectronic features of lead-free A(2)AgRhBr(6)(A = Cs, Rb, K, Na, Li) with halide double perovskite composition
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Physical and optoelectronic features of lead-free A(2)AgRhBr(6)(A = Cs, Rb, K, Na, Li) with halide double perovskite composition

机译:无铅A(2)Agrhbr(6)(A = Cs,Rb,K,Na,Li)用卤化物双钙钛矿组成的物理和光电特征

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Variation in the composition of the A, B ', and B ''-sites to develop novel AB ' B '' X(6)halide double perovskites is an important topic in areas as diverse as materials- and nano-science, photovoltaics, photocatalysis, device technologies and bandgap engineering. In this study, we examined the geometrical, dynamical, electronic, and optical properties of the rhodium-based halide series A(2)AgRhBr(6)(A = Cs, Rb, K, Na, Li) with double perovskite stoichiometry using density functional theory with the meta-GGA functional SCAN-rVV10. Geometry-based stability analysis suggested the formation of the first two members of the series as perovskites and the remaining three as distorted perovskites, but all are direct bandgap materials displaying electronic transitions at the high-symmetry X-point. Phonon dispersion calculations suggested that Cs(2)AgRhBr(6)is dynamically stable, whereas all other systems of the series are dynamically unstable, as is often the case for single halide perovskites at the high symmetry points of the first Brilliouin zone. The real and positive nature of the three independent elastic constants, used to examine the Born criterion, and the six eigenvalues of the elastic stiffness matrix, indicated that all the A(2)AgRhBr(6)compounds are mechanically stable. While the SCAN-rVV10 bandgaps of these systems were underestimated compared to those evaluated using the HSE06, PBE0, G(0)W(0)and GW(0)methods, the density functional perturbation theory based dielectric function spectra, as well as the refractive index and absorption coefficient spectra, feature broad peaks covering the infrared and visible regions with the onset of optical (direct) absorption occurring near SCAN-rVV10 bandgap energies between 0.74 and 0.77 eV. A high frequency dielectric constant of 7.38 to 8.11, a refractive index of 2.70 to 2.85, and an absorption coefficient in the range of 5.7 x 10(5)-6.3 x 10(5)were calculated for A(2)AgRhBr(6)in the region 0.0-5.0 eV, suggesting possible application of these systems in optoelectronics.
机译:A,B'和B''的组成的变化 - 开发新颖的AB'B'X(6)卤化物双普林斯基斯是各种各样的材料和纳米科学,光伏,光伏等地区的重要主题。光电催化,装置技术和带隙工程。在这项研究中,我们研究了使用密度的双钙钛矿化学计量的铑基卤化物系列的几何,动态,电子和光学性能A(2)Agrhbr(6)(a = Cs,Rb,K,Na,Li)具有Meta-GGA功能扫描-RVV10的功能理论。基于几何的稳定性分析表明,将该系列的前两个成员的形成形成为Perovskites,其余三个是扭曲的钙钛矿,但所有是直接带隙材料,在高对称X点处显示电子转换。 Phonon色散计算表明,CS(2)Agrhbr(6)是动态稳定的,而所有其他系列系统的动态不稳定,正如第一布里渊区的高对称点处的单卤化物钙锌矿的常见情况。三个独立弹性常数的真实和积极性质,用于检查出生的标准和弹性刚度基质的六个特征值,表明所有A(2)Agrhbr(6)化合物是机械稳定的。虽然与使用HSE06,PBE0,G(0)W(0)和GW(0)方法的评估相比,这些系统的扫描RVV10带隙低估了,但是基于密度函数扰动理论的介电函数光谱以及折射率和吸收系数谱,具有覆盖红外和可见区域的宽峰,在扫描-RVV10带隙能量上发生在0.74和0.77eV之间的扫描RVV10带隙能发作。高频介电常数为7.38至8.11,折射率为2.70至2.85,并计算出5.7×10(5)-6.3×10(5)的吸收系数,为a(2)Agrhbr(6)在0.0-5.0 eV中,表明这些系统在光电子中可能应用。

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