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Manipulating connecting nodes through remote alkoxy chain variation in coordination networks with 4′-alkoxy-4,2′:6′,4″-terpyridine linkers

机译:通过4'-烷氧基-4,2':6',4“ - 吡啶连接体在配位网络中通过远程烷氧基链变异操纵连接节点

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摘要

The effects of increasing the length of the alkoxy substituent in 4′-alkoxy-4,2′:6′,4′′-terpyridines when they are combined with cadmium(II) nitrate under conditions of room temperature crystallization and in the same cadmium : ligand (1 : 3) ratio have been investigated. The divergent ligand 4′-n-propoxy-4,2′:6′,4′′-terpyridine (2) reacts with Cd(NO3)2·4H2O to give [{Cd2(NO3)4(2)3}·3CHCl3]n in which the Cd atoms act as 3-connecting nodes and assemble into a (6,3) net with each ligand 2 linking adjacent Cd atoms. One of the three independent n-propoxy groups nestles into a cleft in the next 2-dimensional sheet; this ‘tail-in-pocket’ interaction restricts the length of the alkyl chain that can be accommodated. Replacing the n-propoxy by an n-pentoxy, n-hexoxy or n-heptoxy substituent results in a switch from a (6,3) to (4,4) net; in [{Cd2(NO3)4(3)4}·3CHCl3]n (3 = 4′-n-pentoxy-4,2′:6′,4′′-terpyridine) and [{Cd2(NO3)4(4)4}·CHCl3·MeOH]n (4 = 4′-n-hexoxy-4,2′:6′,4′′-terpyridine), each Cd atom is a 4-connecting node with trans-nitrato ligands, while in [{Cd(NO3)2(5)2}·2MeOH]n (5 = 4′-n-heptoxy-4,2′:6′,4′′-terpyridine) a cis-arrangement of nitrato ligands is observed. The reaction between Cd(NO3)2·4H2O and 4 was also investigated using a 1 : 1 ratio of reagents; this leads to the assembly of the 1-dimensional ladder [Cd2(NO3)4(MeOH)(4)3]n in which each Cd atom is a 3-connecting node. In each structure, face-to-face π-stacking of the central pyridine rings or of pyridine/phenyl rings of ligands in adjacent sheets or chains is a primary packing interaction; the role of van der Waals interactions as the chain length increases is discussed. Powder diffraction confirmed that each coordination polymer or network characterized by single crystal X-ray crystallography was representative of the bulk sample. The solid-state emission properties of ligands 2, 3 and 4 and their coordination polymers are reported; the blue emission of the free ligands is red-shifted by up to 59 nm upon formation of the coordination networks, and quantum yields are in the range 11–22%.
机译:在室温结晶和相同镉条件下,将4'-烷氧基-4,2':6',4''-三联吡啶中的烷氧基取代基的长度与硝酸镉结合时增加的效果:配体(1∶3)的比例已被研究。发散的配体4'-正丙氧基-4,2':6',4''-吡啶(2)与Cd(NO3)2·4H2O反应生成[{Cd2(NO3)4(2)3}· 3CHCl3] n,其中Cd原子充当3个连接节点,并组装成(6,3)网,每个配体2连接相邻的Cd原子。三个独立的正丙氧基基团之一嵌套在下一个二维图纸中的裂口中。这种“尾巴式”相互作用限制了可容纳的烷基链的长度。用正戊氧基,正己氧基或正庚氧基取代正丙氧基导致从(6,3)到(4,4)的转换。在[{Cd2(NO3)4(3)4}·3CHCl3] n(3 = 4'-n-戊氧基-4,2':6',4''-叔吡啶)和[{Cd2(NO3)4( 4)4}·CHCl3·MeOH] n(4 = 4'-n-己氧基-4,2':6',4''-叔吡啶),每个Cd原子是一个带有反式硝基配体的4连接节点,而在[{Cd(NO3)2(5)2}·2MeOH] n(5 = 4'-n-庚氧基-4,2':6',4''-吡啶)中,硝酸根配体的顺式排列为观测到的。还使用1:1试剂比例研究了Cd(NO3)2·4H2O与4之间的反应。这将导致一维阶梯[Cd2(NO3)4(MeOH)(4)3] n的组装,其中每个Cd原子都是3个连接节点。在每个结构中,中心吡啶环或配体的吡啶/苯基环在相邻片或链中的面对面π-堆积是主要的堆积相互作用。讨论了范德华相互作用随着链长增加的作用。粉末衍射证实,以单晶X射线晶体学为特征的每种配位聚合物或网络都代表了本体样品。报道了配体2、3和4及其配位聚合物的固态发射特性。形成配位网络后,游离配体的蓝光发射最多可移动59 nm,并且量子产率在11-22%范围内。

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