A Three‐Dimensionally Extended Metal–Organic Ladder Compound Exhibiting Proton Conduction

质子 金属 材料科学 热传导 化学 物理 复合材料 冶金 核物理学
作者
Hao Liang,Kenji Otsubo,Yusuke Wakabayashi,Hajime Sagayama,Shogo Kawaguchi,Hiroshi Kitagawa
出处
期刊:Angewandte Chemie [Wiley]
标识
DOI:10.1002/anie.202400162
摘要

Ladder systems situated in the dimensional crossover region have attracted much attention because their electronic states and physical properties depend strongly on the electronic correlations among the constituent legs. Generally, two‐/three‐legged transition metal‐oxide ladder compounds are studied as representative ladder systems, but two‐/three‐dimensional (2D/3D) extensions based on such ladder systems with a few numbers of legs are difficult because of the extreme synthesis conditions. Here, for the first time, we report the successful creation of a 3D extended two‐legged ladder compound, [Pt(en)(dpye)I]2(NO3)4·2H2O (en = ethylenediamine; dpye = 1,2‐Di(4‐pyridyl)ethane), which is obtained by simple oxidative polymerization of a small Pt macrocyclic complex using elemental I2. The unique 3D extended lattice consists of 1D mixed‐valence halogen‐bridged metal chains (···Pt–I–Pt–I···) and helically arranged macrocyclic units as the constituent legs and rungs, as confirmed by single‐crystal X‐ray diffraction. Diffuse X‐ray scattering analyses and optical measurements revealed that the out‐of‐phase mixed‐valence Pt2+/Pt4+ arrangement arises from the weak interchain correlation among adjacent legs. In addition, this compound shows an increase in proton conductivity by a factor of up to 1000, depending on humidity.
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