变质磁性
发光
级联
脱氢
原位
级联反应
化学
配体(生物化学)
组合化学
草酸盐
反铁磁性
光化学
聚合物
结晶
配位聚合物
材料科学
亲核细胞
纳米技术
甲酸
反应中间体
超分子化学
晶体结构
单晶
喹啉
荧光
结晶学
化学物理
双金属片
反应机理
作者
Linjie Zhang,Shaoyang Wang,Sen Wang,Fu‐Chen Liu,Zhao‐Quan Yao,Jiong‐Peng Zhao
标识
DOI:10.1021/acs.cgd.5c01047
摘要
The in situ reactions in solvothermal processes have attracted explosive attention owing to their unique potential for fabricating organic ligands which were hard to achieve by the conventional organic synthesis method and for revealing the generation mechanisms directly by capturing the key intermediate through crystallization. In this work, using formic acid and 4-pyridinemethaneamine (L0) as raw materials, the linear ligand 2,5-di(pyridin-4-yl)pyrazine (L) has been generalized in situ in assembling the 2D coordination polymers [Fe2(C2O4)2L2]n·(0.5L)n·(0.5H2O)n (1) and [Zn(C2O4)(L)1.5]n (2). After adjusting the reaction time, the intermediate N-(pyridin-4-ylmethyl)formamide (L1) was captured by crystallization of the chain complexes [Fe(L1)2(C2O4)]n (3) and [Zn(L1)2(C2O4)]n (4). The possible in situ reaction mechanism has been revealed to be the cascade reaction between the amidation, nucleophilic addition–elimination reaction, and the oxidative dehydrogenation reaction through the crystal data, mass spectrometry, and 1H NMR. Magnetic studies of 1 illustrate that the spin-canted iron oxalate chains are coupled antiferromagnetically, and the antiferromagnetic interactions between the chain could be overcome by the external magnetic field and leads to metamagnetism. 2 exhibits orange fluorescence emission owing to the formation of a spatial conjugation system in the network. This work proposes an insightful synthetic route to prepare functional coordination polymers (CPs) through an in situ reaction.
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