点击化学
化学
炔烃
催化作用
叠氮化物
叠氮化钠
纳米颗粒
组合化学
分子内力
超分子化学
加合物
金属
高分子化学
有机化学
光化学
纳米技术
分子
材料科学
作者
Yugang Bai,Xinxin Feng,Hang Xing,Yanhua Xu,Boo Kyung Kim,Noman Baig,Tianhui Zhou,Andrew A. Gewirth,Yi Lu,Eric Oldfield,Steven C. Zimmerman
摘要
We show that copper-containing metal-organic nanoparticles (MONPs) are readily synthesized via Cu(II)-mediated intramolecular cross-linking of aspartate-containing polyolefins in water. In situ reduction with sodium ascorbate yields Cu(I)-containing MONPs that serve as highly efficient supramolecular catalysts for alkyne-azide "click chemistry" reactions, yielding the desired 1,4-adducts at low parts per million catalyst levels. The nanoparticles have low toxicity and low metal loadings, making them convenient, green catalysts for alkyne-azide "click" reactions in water. The Cu-MONPs enter cells and perform efficient, biocompatible click chemistry, thus acting as intracellular nanoscale molecular synthesizers.
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