della Sala Flavio, Kay Euan R
Angew Chem Int Ed Engl. 2015 Mar 27;54(14):4187-91. doi: 10.1002/anie.201409602.
Existing methods for the covalent functionalization of nanoparticles rely on kinetically controlled reactions, and largely lack the sophistication of the preeminent oligonucleotide-based noncovalent strategies. Here we report the application of dynamic covalent chemistry for the reversible modification of nanoparticle (NP) surface functionality, combining the benefits of non-biomolecular covalent chemistry with the favorable features of equilibrium processes. A homogeneous monolayer of nanoparticle-bound hydrazones can undergo quantitative dynamic covalent exchange. The pseudomolecular nature of the NP system allows for the in situ characterization of surface-bound species, and real-time tracking of the exchange reactions. Furthermore, dynamic covalent exchange offers a simple approach for reversibly switching—and subtly tuning—NP properties such as solvophilicity.
现有的纳米粒子共价功能化方法依赖于动力学控制的反应,并且在很大程度上缺乏卓越的基于寡核苷酸的非共价策略的复杂性。在此,我们报告了动态共价化学在纳米粒子(NP)表面功能可逆修饰中的应用,将非生物分子共价化学的优点与平衡过程的有利特性相结合。与纳米粒子结合的腙的均匀单层可以进行定量的动态共价交换。NP系统的假分子性质允许对表面结合物种进行原位表征,并实时跟踪交换反应。此外,动态共价交换提供了一种简单的方法,用于可逆地切换并微调NP的性质,如亲溶剂性。