KLI

Inverted Polymer Solar Cells with Annealing-Free Solution-Processable NiO

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Abstract
Nickel oxide (NiO) offers intrinsic p-type behavior and high thermal and chemical stability, making it promising as a hole transport layer (HTL) material in inverted organic solar cells. However, its use in this application has been rare because of a wettability problem caused by use of water as base solvent and high-temperature annealing requirements.In the present work, an annealing-free solution-processable method for NiO deposition is developed and applied in both conventional and inverted non-fullerene polymer solar cells. To overcome the wettability problem, the typical DI water solvent is replaced with a mixed solvent of DI water and isopropyl alcohol with a small amount of 2-butanol additive. This allows a NiO nanoparticle suspension (s-NiO) to be deposited on a hydrophobic active layer surface. An inverted non-fullerene solar cell based on a blend of p-type polymer PTB7-Th and non-fullerene acceptor IEICO-4F exhibits the high efficiency of 11.23% with an s-NiO HTL, comparable to the efficiency of an inverted solar cell with a MoOx HTL deposited by thermal evaporation. Conventionally structured devices including this s-NiO layer show efficiency comparable to that of a conventional device with a PEDOT:PSS HTL.
Author(s)
쩐 홍 냔다오 득 쾅Yung Jin YoonYun Seop Shin최진산Jin Young Kim조신욱
Issued Date
2021
Type
Article
Keyword
annealing-freecharge transport layercuring-freemetal oxidesnickel oxidepolymer solar cells
DOI
10.1002/smll.202101729
URI
https://oak.ulsan.ac.kr/handle/2021.oak/9523
https://ulsan-primo.hosted.exlibrisgroup.com/primo-explore/fulldisplay?docid=TN_cdi_proquest_miscellaneous_2544881525&context=PC&vid=ULSAN&lang=ko_KR&search_scope=default_scope&adaptor=primo_central_multiple_fe&tab=default_tab&query=any,contains,Inverted%20Polymer%20Solar%20Cells%20with%20Annealing-Free%20Solution-Processable%20NiO&offset=0&pcAvailability=true
Publisher
Small
Location
독일
Language
영어
ISSN
1613-6810
Citation Volume
17
Citation Number
31
Citation Start Page
2101729
Citation End Page
2101729
Appears in Collections:
Natural Science > Physics
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