纳米团簇
金属有机骨架
化学
导电体
量子隧道
背景(考古学)
纳米技术
微晶
电阻率和电导率
光电导性
电极
分子线
光电子学
化学物理
分子
吸附
材料科学
复合材料
结晶学
有机化学
物理化学
古生物学
工程类
电气工程
生物
作者
Shuangbing Han,Scott C. Warren,Seok Min Yoon,Christos D. Malliakas,Xianliang Hou,Yanhu Wei,Mercouri G. Kanatzidis,Bartosz A. Grzybowski
摘要
Metal-organic frameworks (MOFs) are typically poor electrical conductors, which limits their uses in sensors, fuel cells, batteries, and other applications that require electrically conductive, high surface area materials. Although metal nanoclusters (NCs) are often added to MOFs, the electrical properties of these hybrid materials have not yet been explored. Here, we show that adding NCs to a MOF not only imparts moderate electrical conductivity to an otherwise insulating material but also renders it photoconductive, with conductivity increasing by up to 4 orders of magnitude upon light irradiation. Because charge transport occurs via tunneling between spatially separated NCs that occupy a small percent of the MOF's volume, the pores remain largely open and accessible. While these phenomena are more pronounced in single-MOF crystals (here, Rb-CD-MOFs), they are also observed in films of smaller MOF crystallites (MIL-53). Additionally, we show that in the photoconductive MOFs, the effective diffusion coefficients of electrons can match the typical values of small molecules diffusing through MOFs; this property can open new vistas for the development of MOF electrodes and, in a wider context, of electroactive and light-harvesting MOFs.
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