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First principles study for band engineering of KNbO3 with 3d transition metal substitution

机译:具有3d过渡金属替代的KNbO3的能带工程的首要原理研究

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摘要

First principles calculations in the framework of density functional theory (DFT) were performed to tune the electronic structures of wide gap KNbO _(3) through 3d transition metal substitution, using PBE and HSE06 functionals for the exchange correlation potentials. While PBE functionals are suitable for structural and energetic properties, HSE06 is more reliable for band structure calculations. Impurity bands owing to V, Mn, or Fe are present in the forbidden gap, leading to effective reduction of optical gaps via multiple wavelength absorption. It is discovered that Ti and Cr doped systems are suitable for n type transparent conducting oxide (TCO), the Ni doped system for highly desirable p type TCO, and the Cu doped system is an excellent candidate for p type optical absorber layers. This work provides a systematic and overall perspective on the effects and associated mechanisms of transition metal doping or alloying, thus helping exploitation of perovskite oxides as potential key materials for photovoltaic and transparent photonic applications.
机译:进行了密度泛函理论(DFT)框架中的第一性原理计算,以3D过渡金属取代来调节宽间隙KNbO _(3)的电子结构,使用PBE和HSE06官能团作为交换相关势。虽然PBE功能适合结构和能量特性,但是HSE06对于带结构计算更可靠。由于在禁带中存在由于V,Mn或Fe引起的杂质带,从而通过多波长吸收有效减少了光学带。已经发现,Ti和Cr掺杂的体系适用于n型透明导电氧化物(TCO),Ni掺杂的体系适用于高度期望的p型TCO,而Cu掺杂的体系适用于p型光吸收层。这项工作为过渡金属掺杂或合金化的作用及其相关机理提供了系统的整体视角,从而有助于将钙钛矿氧化物开发为光伏和透明光子应用的潜在关键材料。

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