首页> 美国卫生研究院文献>Frontiers in Chemistry >Photoluminescence Properties of Two Closely Related Isostructural Series Based on Anderson-Evans Cluster Coordinated With Lanthanides Ln(H2O)7{X(OH)6Mo6O18}•yH2O X = Al Cr
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Photoluminescence Properties of Two Closely Related Isostructural Series Based on Anderson-Evans Cluster Coordinated With Lanthanides Ln(H2O)7{X(OH)6Mo6O18}•yH2O X = Al Cr

机译:基于镧系元素Ln(H2O)7 {X(OH)6Mo6O18}•yH2OX = AlCr配位的Anderson-Evans团簇的两个紧密相关的同构系列的光致发光性质

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摘要

The paper describes synthesis and structural characterization of the whole series of two closely related lanthanide coordinated chromium or aluminum hexamolybdates (Anderson-Evans cluster) including twelve new members hitherto unreported: [Ln(H2O)7{X(OH)6Mo6O18}]·4H2O and [Ln(H2O)7{X(OH)6Mo6O18}Ln(H2O)7]{X(OH)6Mo6O18}·16H2O where X = Al or Cr and Ln = La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, and Y. Crystal structures of all the solids were established by powder and single crystal X-ray diffraction techniques. The two series are dictated by a different aggregation of the same set of molecular species: Lighter lanthanides favor coordination interaction between lanthanide ions and molybdate cluster forming 1D chains (Series I) while the heavier lanthanides result in the stacking of a cation, a pair of lanthanide hydrates coordinating to the cluster, and an anion, the discrete cluster is further stabilized through a large number of water molecules (Series II). Crystallization with Er3+ and Tm3+ ions results in a concomitant mixture of Series I and II. Photoluminescence of single crystals of all the chromium molybdates was dominated by a ruby-like emission including those which contain optically active ions Pr, Sm, Eu, Tb, Dy, and Tm. In contrast, aluminum analogs showed photoluminescence corresponding to characteristic lanthanide emissions. Our results strongly suggest a possible energy transfer from f levels of lanthanide ions to d levels of chromium (III) causing the quenching of lanthanide emission when coordinated with chromium molybdates. Intensity measurements showed that the emission from chromium molybdates are almost two orders of magnitude lower than naturally occurring ruby with broader line widths at room temperature.
机译:本文描述了两个紧密相关的镧系元素配位的铬或铝酸六钼酸盐(Anderson-Evans团簇)的整个系列的合成和结构表征,包括迄今未报道的十二个新成员:[Ln(H2O)7 {X(OH)6Mo6O18}]·4H2O和[Ln(H2O)7 {X(OH)6Mo6O18} Ln(H2O)7] {X(OH)6Mo6O18}·16H 2 O,其中X = Al或Cr,Ln = La,Ce ,Pr,Nd,Sm,Eu,Gd,Tb,Dy,Ho,Er,Tm,Yb,Lu和Y。通过粉末和单晶X射线衍射技术确定所有固体的晶体结构。这两个系列是由同一组分子种类的不同聚集决定的:较轻的镧系元素有助于镧系元素离子与形成一维链的钼酸盐簇之间的配位相互作用(系列I),而较重的镧系元素则导致阳离子的堆积,一对镧系元素水合物与团簇和阴离子配位,通过大量的水分子(系列II)使离散团簇进一步稳定。用Er 3 + 和Tm 3 + 离子进行结晶会产生系列I和II的伴随混合物。所有钼酸铬单晶的光致发光主要是红宝石样发射,包括那些包含光学活性离子Pr,Sm,Eu,Tb,Dy和Tm的发射。相反,铝类似物显示出与特征镧系元素发射相对应的光致发光。我们的结果有力地表明,当与钼酸铬配位时,可能从f含量的镧系元素离子到d含量的铬(III)能量转移,从而导致镧系元素的猝灭。强度测量表明,钼酸铬的排放量比天然存在的红宝石的排放量低近两个数量级,而在室温下线宽较宽。

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