首页> 美国卫生研究院文献>Chemical Science >Supramolecular assembly of a phosphole-based moiety into nanostructures dictated by alkynylplatinum(ii) terpyridine complexes through non-covalent Pt···Pt and π–π stacking interactions: synthesis characterization photophysics and self-assembly behaviors
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Supramolecular assembly of a phosphole-based moiety into nanostructures dictated by alkynylplatinum(ii) terpyridine complexes through non-covalent Pt···Pt and π–π stacking interactions: synthesis characterization photophysics and self-assembly behaviors

机译:通过非共价Pt···Pt和π–π堆积相互作用将基于磷脂的部分超分子组装为炔基铂(ii)吡啶吡啶配合物所决定的纳米结构:合成表征光物理和自组装行为

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摘要

A new class of platinum(ii) terpyridine complexes with a phosphole-derived bridging alkynyl ligand have been prepared. The X-ray crystal structure of complex >2 has been determined, and reveals a polymeric zig-zag chain structure with the existence of π–π stacking interactions. The photophysical properties have also been studied, with 3MLCT/3LLCT phosphorescence exhibited in degassed CH2Cl2; the energy of which is varied by the π-conjugation of the terpyridine ligands. The solvent-induced assembly of complex >1 has been studied. The incorporation of hydrophobic hydrocarbon chains has been shown to play an important role in assisting the formation of self-assembled nanostructures via Pt···Pt, π–π stacking and hydrophobic–hydrophobic interactions. It has been established that an isodesmic growth mechanism operates in polar media to give nanospheres, while fibrous networks originate from the self-assembly of the complexes in non-polar media, predominantly driven by π–π stacking interactions.
机译:制备了一类新的具有磷衍生的桥联炔基配体的铂(ii)联吡啶配合物。已经确定了复合物> 2 的X射线晶体结构,并揭示了存在π–π堆积相互作用的聚合之字形链结构。还研究了光物理性质,在脱气的CH2Cl2中表现出 3 MLCT / 3 LLCT磷光。其能量通过三联吡啶配体的π共轭而变化。研究了溶剂诱导的复合物> 1 的组装。疏水性烃链的掺入已被证明在通过Pt···Pt,π-π堆积和疏水-疏水相互作用帮助形成自组装纳米结构中起重要作用。已经确定,等渗生长机制在极性介质中起作用以产生纳米球,而纤维网络则起源于非极性介质中复合物的自组装,主要是由π-π堆积相互作用驱动。

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