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Get Free AccessWe fabricate a field-effect transistor by covalently functionalizing PbS nanoparticles with tetrathiafulvalenetetracarboxylate. Following experimental results from cyclic voltammetry and ambient-pressure X-ray photoelectron spectroscopy, we postulate a near-resonant alignment of the PbS 1Sh state and the organic HOMO, which is confirmed by atomistic calculations. Considering the large width of interparticle spacing, we observe an abnormally high field-effect hole mobility, which we attribute to the postulated resonance. In contrast to nanoparticle devices coupled through common short-chained ligands, our system maintains a large degree of macroscopic order as revealed by X-ray scattering. This provides a different approach to the design of hybrid organic-inorganic nanomaterials, circumvents the problem of phase segregation, and holds for versatile ways to design ordered, coupled nanoparticle thin films.
Marcus Scheele, David Hanifi, Danylo Zherebetskyy, Stephanus Axnanda, Benjamin J. Rancatore, Kari Thorkelsson, Ting Xu, Zhi Liu, Lin‐Wang Wang, Yi Liu, Paul Alivisatos (2014). PbS Nanoparticles Capped with Tetrathiafulvalenetetracarboxylate: Utilizing Energy Level Alignment for Efficient Carrier Transport. , 8(3), DOI: https://doi.org/10.1021/nn406127s.
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Type
Article
Year
2014
Authors
11
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1021/nn406127s
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