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An experimental and mechanism study on the regioselective click reaction toward the synthesis of thiazolidinone-triazole

机译:对噻唑烷酮 - 三唑合成的区域选择性点击反应的实验和机制研究

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摘要

An efficient procedure for the synthesis of novel thiazolidinone triazoles through 32 cycloaddition reactions in the presence of copper(I) species was described, and the molecular mechanism of this 32CA was investigated computationally. Different possible pathways for CA process have been studied to achieve this goal, including one-step pathways for both regioisomers 1,4- and 1,5-triazoles (uncatalyzed, mono-copper, di-copper) and also mono- and di-copper stepwise pathways for 1,4-disubstituted triazole. It was exhibited that the most convenient route in terms of energy barriers includes two copper ions. Based on the calculation, the reaction follows a di-copper stepwise mechanism involving the formation of a six-membered ring and then undergoes a ring contraction to a five-membered ring. The regiochemistry of the reaction was investigated based on local and global reactivity indices of reactants, the transition state stabilities calculation. The electron reorganization along the uncatalyzed one-step mechanism has been investigated by the ELF topological analysis of the bonding changes along with the CA reaction.
机译:描述了在铜(I)物种存在下通过32环加成反应合成新型噻唑烷酮三唑的有效方法,并计算该32CA的分子机制。已经研究了CA工艺的不同可能的途径,以实现这一目标,包括用于均可分选者1,4-和1,5-三唑(Uncalyzed,单铜,二铜)的一步途径,也是单一的铜逐步途径对于1,4-二取代的三唑。它表明,在能量屏障方面最方便的路线包括两个铜离子。基于该计算,反应遵循涉及形成六元环的二铜逐步机制,然后经历与五元环的环收缩。基于反应物的局部和全球反应性指数研究了反应的测定性,过渡状态稳定性计算。通过对Ca反应的键合变化的ELF拓扑分析研究了沿未纳米岩石的一步机构的电子重组。

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