研究目的
To investigate the use of adenine as a surface modifier on NiOx for improving energy level alignment, crystallinity, and stability in perovskite solar cells.
研究成果
Adenine modification of NiOx substrates significantly improves the energy level alignment, crystallinity, and grain size of perovskite layers, leading to enhanced device performance and stability. This approach offers a novel strategy for interface engineering in perovskite solar cells.
研究不足
The study focuses on the specific modification of NiOx with adenine and its effects on perovskite solar cells. The scalability and long-term stability under various environmental conditions beyond the tested parameters remain to be explored.
1:Experimental Design and Method Selection:
The study involved the use of adenine as a surface modifier on NiOx substrates to modulate energy levels and improve the interface between NiOx and perovskite layers.
2:Sample Selection and Data Sources:
Perovskite solar cells were fabricated with and without adenine modification to compare performance.
3:List of Experimental Equipment and Materials:
Included UPS R3000 for work function determination, XPS for elemental properties, XRD for crystallinity, UV-vis spectroscopy for absorption, SEM for morphology, PL and TRPL for charge carrier characteristics, and DFT calculations for structural stability.
4:Experimental Procedures and Operational Workflow:
Fabrication involved spin-coating NiOx and adenine layers, followed by perovskite deposition and device assembly. Characterization included electrical, optical, and structural analyses.
5:Data Analysis Methods:
Performance metrics (PCE, Voc, Jsc, FF) were analyzed alongside stability tests under ambient and illuminated conditions.
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XRD
MiniFlex 600
Rigaku
Crystallinity measurement
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UV-2600 spectroscopy
UV-2600
Shimadzu
UV-vis absorption measurement
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Flou Time 300
Flou Time 300
PicoQuant
Steady photoluminescence (PL) and time-resolved photoluminescence (TRPL) decay measurements
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Keithley 2400 source
2400
Keithley
J-V characteristics measurement
暂无现货
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XPS
Axis Supra
Shimadzu
Elemental properties analysis
暂无现货
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UPS R3000
R3000
Scienta
Determining the work function (WF) and valance band maximum (VBM)
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SEM
Gemini SEM 300
Morphology collection
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Solar simulator
San-EI Electric
Standard AM 1.5G illumination
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QE-R
QE-R
Enlitech
Monochromatic incident photon to current conversion efficiency (IPCE) measurement
暂无现货
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Paios 2.0
2.0
Transient photocurrent decay (TPC) and transient photovoltage decay (TPV) measurement
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