Sugi Korath Shivan, Maier Andre, Scheele Marcus
Institute of Physical and Theoretical Chemistry, Universität Tübingen, Auf der Morgenstelle 18, D-72076 Tübingen, Germany.
Chem Commun (Camb). 2022 Jun 21;58(50):6998-7017. doi: 10.1039/d2cc00778a.
We provide a comprehensive account of the optical, electrical and mechanical properties that emerge from the self-assembly of colloidal nanocrystals or atomically precise nanoclusters into crystalline arrays with long-range order. We compare the correlation between the supercrystalline structure and these emergent properties with similar correlations in crystals of atoms to address the hypothesis that nanocrystals and nanoclusters exhibit quasi-atomic behaviour. We come to the conclusion that, effectively, this analogy is indeed justified, although the chemical origin for the same emergent properties are substantially different in crystals of atoms supercrystals. We provide an outlook onto the most promising applications of supercrystals of nanocrystals and nanoclusters and discuss the challenges to be overcome before their commercialization.
我们全面阐述了胶体纳米晶体或原子精确纳米团簇自组装成长程有序晶体阵列时所呈现的光学、电学和机械性能。我们将超晶体结构与这些涌现特性之间的相关性,与原子晶体中的类似相关性进行比较,以验证纳米晶体和纳米团簇表现出准原子行为这一假设。我们得出的结论是,实际上这种类比是合理的,尽管原子晶体和超晶体中相同涌现特性的化学起源有很大不同。我们展望了纳米晶体和纳米团簇超晶体最具前景的应用,并讨论了其商业化之前需要克服的挑战。