纳米晶
化学
光致发光
胶体
离子
金属
催化作用
电荷(物理)
水溶液中的金属离子
化学工程
纳米技术
无机化学
物理化学
有机化学
光电子学
工程类
物理
量子力学
材料科学
作者
Angshuman Nag,Dae Sung Chung,Dmitriy S. Dolzhnikov,Nada M. Dimitrijević,Soma Chattopadhyay,Tomohiro Shibata,Dmitri V. Talapin
摘要
Colloidal semiconductor nanocrystals (NCs) provide convenient "building blocks" for solution-processed solar cells, light-emitting devices, photocatalytic systems, etc. The use of inorganic ligands for colloidal NCs dramatically improved inter-NC charge transport, enabling fast progress in NC-based devices. Typical inorganic ligands (e.g., Sn(2)S(6)(4-), S(2-)) are represented by negatively charged ions that bind covalently to electrophilic metal surface sites. The binding of inorganic charged species to the NC surface provides electrostatic stabilization of NC colloids in polar solvents without introducing insulating barriers between NCs. In this work we show that cationic species needed for electrostatic balance of NC surface charges can also be employed for engineering almost every property of all-inorganic NCs and NC solids, including photoluminescence efficiency, electron mobility, doping, magnetic susceptibility, and electrocatalytic performance. We used a suite of experimental techniques to elucidate the impact of various metal ions on the characteristics of all-inorganic NCs and developed strategies for engineering and optimizing NC-based materials.
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