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Intrinsic and extrinsic parameters for controlling the growth of organic single-crystalline nanopillars in photovoltaics

Authors :
Richard W. Johnson
Egle Puodziukynaite
Yue Zhang
Kenneth R. Carter
Alejandro L. Briseno
Jacob John
Stefan C. B. Mannsfeld
Timothy J. Mirabito
Hyunbok Lee
Ying Diao
Todd Emrick
Source :
Nano letters. 14(10)
Publication Year :
2014

Abstract

The most efficient architecture for achieving high donor/acceptor interfacial area in organic photovoltaics (OPVs) would employ arrays of vertically interdigitated p- and n- type semiconductor nanopillars (NPs). Such morphology could have an advantage in bulk heterojunction systems; however, precise control of the dimension morphology in a crystalline, interpenetrating architecture has not yet been realized. Here we present a simple, yet facile, crystallization technique for the growth of vertically oriented NPs utilizing a modified thermal evaporation technique that hinges on a fast deposition rate, short substrate-source distance, and ballistic mass transport. A broad range of organic semiconductor materials is beneficial from the technique to generate NP geometries. Moreover, this technique can also be generalized to various substrates, namely, graphene, PEDOT-PSS, ZnO, CuI, MoO3, and MoS2. The advantage of the NP architecture over the conventional thin film counterpart is demonstrated with an increase of power conversion efficiency of 32% in photovoltaics. This technique will advance the knowledge of organic semiconductor crystallization and create opportunities for the fabrication and processing of NPs for applications that include solar cells, charge storage devices, sensors, and vertical transistors.

Details

ISSN :
15306992
Volume :
14
Issue :
10
Database :
OpenAIRE
Journal :
Nano letters
Accession number :
edsair.doi.dedup.....e45760e5310b061b07b32d4ab6f3ff63