Volokh Michael, Mokari Taleb
Department of Chemistry, Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev Beer-Sheva 8410501 Israel
Nanoscale Adv. 2020 Mar 2;2(3):930-961. doi: 10.1039/c9na00729f. eCollection 2020 Mar 17.
Hybrid nanostructures, composed of multi-component crystals of various shapes, sizes and compositions are much sought-after functional materials. Pairing the ability to tune each material separately and controllably combine two (or more) domains with defined spatial orientation results in new properties. In this review, we discuss the various synthetic mechanisms for the formation of hybrid nanostructures of various complexities containing at least one metal/semiconductor interface, with a focus on colloidal chemistry. Different synthetic approaches, alongside the underlying kinetic and thermodynamic principles are discussed, and future advancement prospects are evaluated. Furthermore, the proved unique properties are reviewed with emphasis on the connection between the synthetic method and the resulting physical, chemical and optical properties with applications in fields such as photocatalysis.
由各种形状、尺寸和组成的多组分晶体构成的混合纳米结构是备受追捧的功能材料。分别对每种材料进行可控调节,并将两个(或更多)具有确定空间取向的域可控地组合在一起,这种能力会产生新的特性。在本综述中,我们讨论了形成包含至少一个金属/半导体界面的各种复杂程度的混合纳米结构的各种合成机制,重点是胶体化学。讨论了不同的合成方法以及潜在的动力学和热力学原理,并评估了未来的发展前景。此外,还对已证实的独特性质进行了综述,重点是合成方法与所得物理、化学和光学性质之间的联系,以及在光催化等领域的应用。