论文标题

在BI3+激活的Camo3(M = ZR,SN,Ti)钙化蛋白酶中揭示发射状态的起源:金属到金属电荷转移与S-P转变

Uncovering the origin of the emitting states in Bi3+-activated CaMO3 (M = Zr, Sn, Ti) perovskites: metal-to-metal charge transfer versus s-p transitions

论文作者

Back, Michele, Ueda, Jumpei, Xu, Jian, Asami, Kazuki, Amidani, Lucia, Trave, Enrico, Tanabe, Setsuhisa

论文摘要

经过一个多世纪的研究,对BI3+离子的光学性质进行了研究,排放性质和吸收光谱的频段的分配仍然模棱两可。在这里,我们报告了对BI3+激活的Camo3钙钛矿(M = ZR,SN和TI)的光谱的见解,讨论了驱动金属到金属电荷转移的因素以及SP-> S2转变。为了弄清整个情况,采用了一种结合的实验和理论方法。光致发光发射的温度依赖性与系统激子能量的温度依赖性之间的比较导致了BI3+活化磷酸盐中发射状态的ChargetRanster特征的前所未有的证据。低温真空紫外光谱以及发光中心真空引用的结合能图的设计被利用以阐明吸收带的起源。此外,边缘结构附近的X射线吸收明确证实了CASNO3和CAZRO3 Perovskites中Ca2+位点中BI3+的稳定。对BI3+激发状态起源的理解的突破可能铺平了新一代有效的BI3+活化磷光体的设计。

After more than a century of studies on the optical properties of Bi3+ ions, the assignment of the nature of the emissions and the bands of the absorption spectra remain ambiguous. Here, we report an insight into the spectroscopy of Bi3+-activated CaMO3 perovskites (M = Zr, Sn, and Ti), discussing the factors driving the metal-to-metal charge transfer and sp -> s2 transitions. With the aim to figure out the whole scenario, a combined experimental and theoretical approach is employed. The comparison between the temperature dependence of the photoluminescence emissions with the temperature dependence of the exciton energy of the systems has led to an unprecedented evidence of the chargetransfer character of the emitting states in Bi3+-activated phosphors. Low-temperature vacuum ultraviolet spectroscopy together with the design of the vacuum-referred binding energy diagram of the luminescent center is exploited to shed light on the origin of the absorption bands. In addition, the X-ray absorption near the edge structure unambiguously confirmed the stabilization of Bi3+ in the Ca2+ site in both CaSnO3 and CaZrO3 perovskites. This breakthrough into the understanding of the excited-state origin of Bi3+ could pave the way toward the design of a new generation of effective Bi3+-activated phosphors.

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