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  4. The effects of interfacial dipole caused by annealing-free Al-doped NiOx in efficient perovskite solar cells
 
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The effects of interfacial dipole caused by annealing-free Al-doped NiOx in efficient perovskite solar cells

Journal
Solar Energy
Journal Volume
233
Pages
345-352
Date Issued
2022
Author(s)
Tseng W.-S
Hung J.-S
Jian Z.-Y
Huang J.-Z
Yang J.-B
Hsu W.-H
CHIH-I WU  
Li Huang X
Chen M.-H.
DOI
10.1016/j.solener.2021.12.073
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123586372&doi=10.1016%2fj.solener.2021.12.073&partnerID=40&md5=f60b36cc78f2acd2eb6280774b0db38f
https://scholars.lib.ntu.edu.tw/handle/123456789/632144
Abstract
Recent researches show that nickel oxide (NiOx) thin films can be utilized as an efficient and stable hole transport layer (HTL) in inverted planar perovskite solar cells (PSCs) replacing costly and chemically unstable organic materials. Nevertheless, thermal annealing process is necessary for NiOx made by conventional methods with metallic dopants, which is not applicable to flexible substrates with low melting points or temperature-sensitive materials. In this work, annealing-free Al-doped NiOx nano-particles (NPs) were synthesized and employed as a HTL in PSCs. Without using any Dimethyl sulfoxide (DMSO) additive in devices, the electrical conductivity, morphology, external quantum efficiency, and power conversion efficiency were all significantly enhanced after 2% Al doping in NiOx. The Ultraviolet Photoemission Spectroscopy (UPS) was conducted to explore the mechanisms behind the device improvements. An interfacial dipole of 0.3 eV was found between the ITO electrode and the NiOx layer directing away from the active layer, boosting the hole extraction efficiency at ITO/MAPbI3 (MA = methylamine) interface. This work not only provides a deep insight of the ITO/NiOx NPs/perovskite interface but also proposes a new strategy for further development of highly efficient and reliable PSCs. © 2022 International Solar Energy Society
Subjects
Aluminum; Hole transport layer; Interfacial dipole; Nickel oxide; Perovskite; Solar cells
SDGs

[SDGs]SDG7

Other Subjects
Aluminum; Annealing; Dimethyl sulfoxide; Efficiency; Hole mobility; Morphology; Nanoparticles; Organic solvents; Oxide films; Perovskite; Perovskite solar cells; Photoelectron spectroscopy; Semiconductor doping; Synthesis (chemical); Al-doped; Annealing-free; Conventional methods; Hole transport layers; Interfacial dipoles; Nanoparti-cles; Nickel oxide thin films; Organic materials; Recent researches; Thermal annealing process; Nickel oxide; additive; detection method; efficiency measurement; electrode; equipment; extraction method; fuel cell; performance assessment; perovskite
Type
journal article

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