Solar energy paper index
Enhanced cathodic photocurrent in electrodeposited n-BiVO4/p-CuBi2O4 heterojunction photocathodes for solar energy conversion
One-line summary
A solar energy research paper on Enhanced cathodic photocurrent in electrodeposited n-BiVO4/p-CuBi2O4 heterojunction photocathodes for solar energy conversion.
Engineering notes
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Chinese explanation / 中文解读
中文解读待补充:本站会优先为光伏效率、钙钛矿太阳能电池、储能技术、太阳能热利用、BIPV、并网技术等高价值论文补充中文说明。
Original abstract
Abstract Copper bismuthate (CuBi 2 O 4 ) is a visible-light-responsive p -type semiconductor with significant potential for photoelectrochemical solar energy conversion, although its performance is limited by rapid charge recombination and poor interfacial charge transfer. In this work, a BiVO 4 /CuBi 2 O 4 p–n heterojunction photocathode was fabricated via electrodeposition on FTO conductive substrates to enhance interfacial charge separation and transport. XRD and Raman analyses confirmed the coexistence of BiVO 4 and CuBi 2 O 4 crystalline phases, while SEM and EDS revealed the morphology and homogeneous elemental distribution of the heterostructure. In an inert electrolyte, photoelectrochemical measurements revealed a significant enhancement in cathodic photocurrent density (− 121 µA cm⁻²) compared to pristine CuBi 2 O 4 (− 78 µA cm⁻²), accompanied by reduced charge-transfer resistance and improved interfacial kinetics, as evidenced by electrochemical impedance spectroscopy. Furthermore, the heterojunction exhibited a prolonged charge-carrier lifetime (36 s), indicating suppressed electron–hole recombination. These results are attributed to the formation of a type II band alignment at the BiVO 4 /CuBi 2 O 4 interface, which promotes efficient spatial separation of charge carriers. This study demonstrates that electrodeposited BiVO 4 /CuBi 2 O 4 heterojunctions are a promising strategy to enhance photocathode performance for solar energy conversion.
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