化学
立方烷
星团(航天器)
硫化物
非线性光学
试剂
二聚体
组合化学
纳米技术
非线性系统
结晶学
物理化学
晶体结构
物理
有机化学
材料科学
计算机科学
量子力学
程序设计语言
作者
Zhikang Wang,Ming‐Hao Du,Pierre Braunstein,Jian‐Ping Lang
摘要
Although the synthesis of low-dimensional metal sulfides by assembling cluster-based units is expected to promote the development of optical materials and models of enzyme active centers such as dinitrogenase, it is faced with limited assembly methodology. Herein we present a cut-to-link strategy to generate high-nuclearity assemblies, inspired by the formation of a Z-type dimer of the W-S-Cu analogues of PN cluster through in situ release of active linkers. Four new compounds with structures based on the same {Tp*WS3Cu3} incomplete cubane-like units were obtained using varied combinations of mild reagents. Open-aperture Z-scan measurements demonstrated the highest-nuclearity complex has the largest nonlinear optical absorption coefficient among discrete cluster-based materials reported to date. This approach enables building high-nuclearity metal sulfide clusters through cluster-based building blocks and opens a way to the design and exploration of materials based on well-identified building blocks.
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