Issue 16, 2021

Transport of charge carriers and optoelectronic applications of highly ordered metal phthalocyanine heterojunction thin films

Abstract

Organic semiconductor thin films based on polycrystalline small molecules exhibit many attractive properties that have already led to their applications in optoelectronic devices, which can be produced by less expensive and stringent processes. Conduction of electric charges typically occurs in polycrystalline organic thin films. Unavoidably, the crystalline domain size, orientation, domain boundaries and energy level of the interface affect the transport of the charge carriers in organic thin films. In this comprehensive perspective, we focus on highly ordered organic heterojunction thin films fabricated by the weak epitaxy growth method. Transport of charge carriers in these highly ordered organic heterojunction thin films was systematically studied with various characterization techniques. Recent advances are presented in high-performance optoelectronic applications based on highly ordered organic heterojunction thin films, including organic photodetectors, photovoltaic cells, photomemory devices and artificial optoelectronic synapses.

Graphical abstract: Transport of charge carriers and optoelectronic applications of highly ordered metal phthalocyanine heterojunction thin films

Article information

Article type
Perspective
Submitted
26 Feb 2021
Accepted
26 Mar 2021
First published
27 Mar 2021

Phys. Chem. Chem. Phys., 2021,23, 9631-9642

Author version available

Transport of charge carriers and optoelectronic applications of highly ordered metal phthalocyanine heterojunction thin films

C. Qian, J. Sun and Y. Gao, Phys. Chem. Chem. Phys., 2021, 23, 9631 DOI: 10.1039/D1CP00889G

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