超极化率
炔烃
乙炔
亚胺
密度泛函理论
偶极子
基质(水族馆)
化学
计算化学
组合化学
材料科学
有机化学
分子
催化作用
海洋学
极化率
地质学
作者
Mumtaz Ali,Abdul Latif,Saeeda Bibi,Sardar Ali,Akbar Ali,Manzoor Ahmad,Rashid Ahmad,Adnan Ali Khan,Ajmal Khan,Alany Ingrid Ribeiro,Ahmed Al‐Harrasi,Umar Farooq
标识
DOI:10.1002/slct.202102715
摘要
Abstract In the current study, a series of stabilized bis‐acetylene incorporated 4‐hydroxybenzaldehyde based macrocycles using the alkyne‐homocoupling approach were synthesized in moderate yields. A total of six newly stiff macrocycles were synthesized in a stepwise manner starting from 4‐hydroxybenzaldehyde. In the first step, base mediated propargylation was performed followed by copper mediated terminal alkyne homocoupling. The alkyne homocoupled substrate having carbonyl at both the terminals is cyclized in the final step via double imine formation reactions using substituted diamines as linker. All the newly synthesized rigid framework of the macrocycles were optimized at B3LYP/6‐31G (d,p) level of theory. Nonlinear optical behaviors of the synthesized macrocycles were explored by the DFT calculations where high values of first‐order hyperpolarizability and dipole moment were examined. In the reported study, a good agreement between experimental and theoretical parameters was observed that may play a significant contribution for the NLO applications.
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