Overcoming size limits with dynamic templates enabling large area single crystal nanowire arrays for photodetectors
Abstract
Abstract Ordered one dimensional perovskite single-crystal nanowire arrays, which combine high surface-to-volume ratios, directional charge transport, and mechanical flexibility, are typically prepared through solution or vapor phase techniques using templates of silicon, polydimethylsiloxane, photoresist, or aluminum oxide to control crystal growth. However, the size limits of these templates restrict the scalability of the arrays. Here, we introduce a dynamic template-assisted coating strategy that integrates blade coating to address this limitation. The method enables deposition of nanowire arrays on substrates with an area 12 times larger than the template. Incorporating a fluorinated passivating agent into the precursor suppresses surface defect formation and improves structural quality. Photodetectors based on MAPbBr 3 arrays achieve a detectivity of 3.9 × 10 14 Jones, a linear dynamic range of 160.3 dB, and a responsivity of 1660 A W -1 , and retain 90.3% of their photocurrent after 300 h at 85% relative humidity without encapsulation.
Article Details
Authors (20)
Mingjie Feng
Jiwon Byun
Zongbao Li
Zhiqiang Xie
Wenbo Lu
Xin Wen
Liang Ding
Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry
Tingting Wu
Sumbal Jamshaid
Klaus Götz
Institute for Crystallography and Structural Physics, Friedrich-Alexander-Universität Erlangen-Nürnberg, Staudtstrasse 3, 91058 Erlangen, Germany
Chaohui Li
Faculty of Engineering, Department of Material Science
Zijian Peng
Faculty of Engineering, Department of Material Science
Huiying Hu
JingJing Tian
Jack Elia
Tobias Unruh
Clausius-Institut für Physikalische und Theoretische Chemie
Marcus Halik
Ding-Jiang Xue
Andres Osvet
Christoph J. Brabec
Institute of Energy Materials and Devices - Photovoltaics (IMD-3)