Tuning the Inter-Nanoplatelet Distance and Coupling Strength by Thermally Induced Ligand Decomposition

Shuai Chen, Samir H. Al-Hilfi, Guangbo Chen,Heng Zhang, Wenhao Zheng,Lucia Di Virgilio, Jaco J. Geuchies,Junren Wang, Xinliang Feng,Andreas Riedinger, Mischa Bonn,Hai I. Wang

SMALL(2024)

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摘要
CdSe nanoplatelets (NPLs) are promising 2D semiconductors for optoelectronic applications, in which efficient charge transport properties are desirable. It is reported that thermal annealing constitutes an effective strategy to control the optical absorption and electrical properties of CdSe NPLs by tuning the inter-NPL distance. Combining optical absorption, transmission electron microscopy, and thermogravimetric analysis, it is revealed that the thermal decomposition of ligands (e.g., cadmium myristate) governs the inter-NPL distance and thus the inter-NPL electronic coupling strength. Employing ultrafast terahertz spectroscopy, it is shown that this enhanced electronic coupling increases both the free carrier generation efficiency and the short-range mobility in NPL solids. The results show a straightforward method of controlling the interfacial electronic coupling strength for developing functional optoelectronic devices through thermal treatments. The study illustrates thermal annealing as an effective strategy to control the optical and electrical properties of CdSe nanoplatelet solids. Combining transmission electron microscopy, thermogravimetric analysis, and Terahertz spectroscopy studies, it is found that the thermal decomposition of ligands results in the inter-NPL distance shortening thus enhancing the inter-NPL electronic coupling strength for free-carrier generation and conduction.image
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关键词
CdSe nanoplatelets,charge transport,coupling strength,thermal annealing,THz spectroscopy
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