Hongye Bai , Kangkang Jia , Pengjie Zhou , Lijing Liu , Xiaohong Wang , Weiqiang Fan
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引用次数: 0
Abstract
Background
Photoelectrochemical (PEC) reduction of nitrate to produce ammonia (NIRR) is a green strategy for converting waste NO3− into high-value chemicals. However, a lack of active sites and low selectivity still plague the single catalyst used to establish the PEC-NIRR system.
Methods
Here, we construct a BiVO4/VIn-ZnIn2S4 (BVO/VIn-ZIS) heterostructure with indium vacancies. The introduction of indium vacancy significantly enhances the conversion of NO3− to NH3 by augmenting active sites and fostering carrier separation via the creation of a built-in electric field.
Significant findings
NH3 yield of BVO/VIn-ZIS heterostructure with moderate indium vacancy (BVO/VIn-ZIS-m) has been promoted to 15.26 μg h−1 cm−2 (BVO/VIn-ZIS-m), and NH3 selectivity reaches 21.3 times that of NO2−. The results of cyclic experiments further demonstrate that NH3 yield of BVO/VIn-ZIS-m has remained 98.4% after five cycles, due to its excellent durability. Therefore, this work demonstrates that indium vacancy could significantly modulate the PEC performance of BiVO4 to achieve an efficient NH3 production.
期刊介绍:
Journal of the Taiwan Institute of Chemical Engineers (formerly known as Journal of the Chinese Institute of Chemical Engineers) publishes original works, from fundamental principles to practical applications, in the broad field of chemical engineering with special focus on three aspects: Chemical and Biomolecular Science and Technology, Energy and Environmental Science and Technology, and Materials Science and Technology. Authors should choose for their manuscript an appropriate aspect section and a few related classifications when submitting to the journal online.