首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effects of Nanoscale Surface Lithium Depletion on the Optical Properties and Electronic Band Structures of Lithium Transition-Metal Phosphates
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Effects of Nanoscale Surface Lithium Depletion on the Optical Properties and Electronic Band Structures of Lithium Transition-Metal Phosphates

机译:纳米级表面锂耗料对锂过渡金属磷酸盐光学性能和电子带结构的影响

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摘要

The optical absorption properties of lithium transition-metal phosphates (LiTMPO4, TM = Mn, Fe, Co, Ni) with nanoscale particle sizes (300-500 nm in diameter) have been measured. The measured edges have been compared with band gaps determined from their corresponding electronic band structure calculations. Various functionals for density functional theory calculations have been compared and validated against experimental results. Gradual increases and intermediate peaks in optical absorption spectra before the main absorption edges have been attributed to intervalence charge transfer between TM2+ and TM3+ due to surface Li depletion. The functional, screened-exchange local density approximation (sX-LDA), which includes screened Hartree-Fock exchange, shows the highest overall accuracy for electronic band structure prediction with acceptable computational cost. The voltage plateaus determined from calculated enthalpies also display the best match with calculations using sX-LDA.
机译:已经测量锂过渡 - 金属磷酸盐(Litmpo4,Tm = Mn,Fe,Co,Ni)的光学吸收性能已经测量了纳米级粒度(直径为300-500nm)。 已经将测量的边缘与从其相应的电子频带结构计算确定的带间隙进行比较。 对密度函数理论计算的各种功能进行了比较和验证了实验结果。 在主要吸收边缘归因于TM2 +和TM3 +由于表面LI耗尽而归因于TM2 +和TM3 +之间的间歇电荷转移之前的光学吸收光谱中的逐渐增加和中间峰。 包括屏蔽Hartree-Fock交换的功能,屏蔽局部密度近似(SX-LDA)显示了具有可接受的计算成本的电子频带结构预测的最高总体精度。 从计算的焓确定的电压平台也使用SX-LDA显示与计算的最佳匹配。

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