2023
DOI: 10.1016/j.jmrt.2023.01.178
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Fe2O3–NiO doped carbon counter electrode for high-performance and long-term stable photovoltaic perovskite solar cells

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Cited by 7 publications
(2 citation statements)
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“…[133][134][135][136][137] Golshani et al studied the effect of Fe 2 O 3 and NiO x nanoparticles, as well as a combination of the two, as additives in commercial carbon paste electrodes. [138] The materials were dispersed in carbon at a 1:30 ratio (w/w) through sonication and ball milling. Cyclic voltammetry (CV) performed on modified carbon electrodes showed an increased work function using NiO x (5.105 eV) and Fe 2 O 3 (5.065 eV) additives.…”
Section: Work Function Of the Carbon Electrode: Effect On Device Perf...mentioning
confidence: 99%
“…[133][134][135][136][137] Golshani et al studied the effect of Fe 2 O 3 and NiO x nanoparticles, as well as a combination of the two, as additives in commercial carbon paste electrodes. [138] The materials were dispersed in carbon at a 1:30 ratio (w/w) through sonication and ball milling. Cyclic voltammetry (CV) performed on modified carbon electrodes showed an increased work function using NiO x (5.105 eV) and Fe 2 O 3 (5.065 eV) additives.…”
Section: Work Function Of the Carbon Electrode: Effect On Device Perf...mentioning
confidence: 99%
“…On the other hand, to overcome the challenges emphasized in Table 4, it will be important for the OPV cell industry to focus on research and development to improve the efficiency, durability, and stability of the technology. [241][242][243][244][245][246] Addressing these technological limitations will help to increase the commercial viability of OPV cells and enable them to compete with traditional solar cells and other renewable energy technologies. Additionally, collaboration with governments, policymakers, and stakeholders can help to create a more favorable regulatory environment for OPV cells and facilitate their adoption.…”
Section: Opportunitiesmentioning
confidence: 99%