Metal oxide-embedded carbon-based materials for polymer solar cells and X-ray detectors

被引:6
作者
Aftab, Sikandar [1 ]
Liu, Hailiang [2 ]
Vikraman, Dhanasekaran [3 ]
Hussain, Sajjad [4 ]
Kang, Jungwon [2 ]
Al-Kahtani, Abdullah A. [5 ]
机构
[1] Sejong Univ, Dept Intelligent Mechatron Engn, Seoul 05006, South Korea
[2] Dankook Univ, Dept Elect & Elect Engn, Yongin 16890, South Korea
[3] Dongguk Univ Seoul, Div Elect & Elect Engn, Seoul 04620, South Korea
[4] Sejong Univ, Dept Nanotechnol & Adv Mat Engn, Seoul, South Korea
[5] King Saud Univ, Chem Dept, Coll Sci, POB 2455, Riyadh 11451, Saudi Arabia
基金
新加坡国家研究基金会;
关键词
Carbon nanotubes - Conversion efficiency - Graphene - Heterojunctions - Nanoparticles - Photodetectors - Photons - Polymer solar cells - X ray detectors;
D O I
10.1039/d3nr05143a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study examines the effects of hybrid nanoparticles made of NiO@rGO (reduced graphene oxide) and NiO@CNT (carbon nanotubes) on PCDTBT and PCBM active layers in glass/ITO/HTL/active-layer/LiF/Al structured bulk heterojunction (BHJ) polymer solar cells (PSCs) and X-ray photodetectors. These hybrid nanoparticles were used to create BHJ solar cells and photodetectors, and microscopic research was conducted to determine how they affect the structure of the devices. The findings show that compared to conventional matrices, the active layers with NiO@rGO and NiO@CNT incorporation have increased the charge carrier capacities and exciton dissociation properties. In order to assess their impact on the characteristics of charge transport, various weight ratios of these hybrid nanoparticles dispersed in polymer junctions are being investigated. Notably, compared to the pure PCDTBT:PCBM active layer (power conversion efficiency (PCE) = 4.35%), the NiO@CNT device has the highest PCE = 6.42% which, among the tested configurations, demonstrates its superior performance in converting sunlight into electricity. Among the tested X-ray detector materials, "NiO@CNT" achieves the best performance with a sensitivity of 1.92 mA Gy-1 cm-2. Through improved interfacial behaviors and effective charge transport, this work highlights the potential of these cutting-edge hybrid nanoparticles to enhance the performance of organic electronic devices. This study examines the effects of hybrid nanoparticles made of NiO@rGO (reduced graphene oxide) and NiO@CNT (carbon nanotubes) on PCDTBT and PCBM active layers in glass/ITO/HTL/active-layer/LiF/Al structured bulk heterojunction (BHJ) polymer solar cells (PSCs) and X-ray photodetectors.
引用
收藏
页码:765 / 776
页数:12
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