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在热力学控制下发光多齿聚合物的镧系元素负载

Lanthanide loading of luminescent multi-tridentate polymers under thermodynamic control.

作者信息

Babel Lucille, Hoang Thi Nhu Y, Nozary Homayoun, Salamanca Jasmina, Guénée Laure, Piguet Claude

机构信息

Department of Inorganic, Analytical and Applied Chemistry, University of Geneva , 30 quai E. Ansermet, CH-1211 Geneva 4, Switzerland.

出版信息

Inorg Chem. 2014 Apr 7;53(7):3568-78. doi: 10.1021/ic4030525. Epub 2014 Jan 20.

Abstract

This work illustrates the use of basic statistical mechanics for rationalizing the loading of linear multitridentate polymers with trivalent lanthanides, Ln(III), and identifies the specific ionic sizes of europium and yttrium as promising candidates for the further design of organized heterometallic f–f′ materials. Using [Ln(hfac)3] (hfac = hexafluoroacetylacetonate) as lanthanide carriers, the thermodynamically controlled formation of Wolf type-II lanthanidopolymers [{Ln(hfac)3}m(L4)] is modeled with the help of two simple microscopic descriptors: (i) the intrinsic affinity of Ln(III) for the tridentate binding sites fN3(Ln) and (ii) the intermetallic interactions ΔE1–2(Ln,Ln) operating between two occupied adjacent sites. Selective complexation (fN3La << fN3Eu > fN3(Y)) modulated by anticooperative interactions (ΔE1–2(La,La) ≃ ΔE1–2(Eu,Eu) > ΔE1–2(Y,Y) ≈ 0) favors the fixation of Eu(III) in semiorganized lanthanidopolymers [{Eu(hfac)3}m(L4)] displaying exploitable light-downshifting.

摘要

这项工作展示了如何运用基础统计力学来合理解释三价镧系元素Ln(III)对线性多齿聚合物的负载情况,并确定了铕和钇的特定离子尺寸是有前景的候选对象,可用于进一步设计有序异金属f–f′材料。以[Ln(hfac)3](hfac = 六氟乙酰丙酮)作为镧系元素载体,借助两个简单的微观描述符对Wolf II型镧系聚合物[{Ln(hfac)3}m(L4)]的热力学控制形成进行建模:(i) Ln(III)对三齿结合位点fN3(Ln)的固有亲和力,以及(ii) 两个相邻占据位点之间存在的金属间相互作用ΔE1–2(Ln,Ln)。由反协同相互作用(ΔE1–2(La,La) ≃ ΔE1–2(Eu,Eu) > ΔE1–2(Y,Y) ≈ 0)调节的选择性络合(fN3La << fN3Eu > fN3(Y))有利于Eu(III)固定在显示出可利用的光向下转换的半有序镧系聚合物[{Eu(hfac)3}m(L4)]中。

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