Photoelectrochemically induced CO2 reduction using Halide-tunable Lead-free Perovskites

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dc.contributor.author Singh, Manoj
dc.contributor.author Nama, Jatin
dc.contributor.author Paul, Tufan
dc.contributor.author Makani, Nisha Hiralal
dc.contributor.author Sahoo, Aditi
dc.contributor.author Sharma, Sudhanshu
dc.contributor.author Banerjee, Rupak
dc.coverage.spatial United States of America
dc.date.accessioned 2023-03-22T14:31:53Z
dc.date.available 2023-03-22T14:31:53Z
dc.date.issued 2023-03
dc.identifier.citation Singh, Manoj; Nama, Jatin; Paul, Tufan; Makani, Nisha Hiralal; Sahoo, Aditi; Sharma, Sudhanshu and Banerjee, Rupak, “Photoelectrochemically induced CO2 reduction using Halide-tunable Lead-free Perovskites”, ACS Applied Energy Materials, DOI: 10.1021/acsaem.3c00053, vol. 6, no. 6, pp. 3566-3578, Mar. 2023.
dc.identifier.issn 2574-0962
dc.identifier.uri https://doi.org/10.1021/acsaem.3c00053
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/8673
dc.description.abstract We report on a series of ambient processed, all-inorganic, lead-free nanocrystalline perovskites, viz. Cs3Bi2Cl9-xBrx, which are halide-tunable and demonstrate photocatalytic CO2 reduction. The conversion yield of CO2 to CO could be tuned by meticulously regulating the Cl-to-Br ratio within the perovskite material. While all of the samples demonstrated CO2 reduction purely under photoillumination (i.e., illumination with an applied bias of 0 V vs Ag/AgCl), it was remarkable that the conversion yield almost doubled for all samples on applying a negative potential of -0.5 V vs Ag/AgCl to the photocatalyst in addition to the illumination. This display of synergistic enhancement in yield under simultaneous application of light and electrical stimulus was maximized for the Cs3Bi2Br3Cl6 nanocrystal variant, which registered a maximum yield of ∼105 μmol/g after 3 h of continuous illumination together with an applied bias of -0.5 V vs Ag/AgCl. The sample demonstrated decent stability over 10 h with a collective CO yield of 239.02 μmol/g. Such a competent CO yield is ascribed to the efficient charge carrier separation and migration to the reactive sites, further corroborated by a quantitative assessment of the electrochemical impedance spectroscopy (EIS) Nyquist plots of the nanocrystal variants. This study strives to provide new avenues and crucial insights into innovative designs, synthesis, and fabrication of competent, lead-free halide perovskite materials for CO2 reduction using photocatalysis.
dc.description.statementofresponsibility by Manoj Singh, Jatin Nama, Tufan Paul, Nisha Hiralal Makani, Aditi Sahoo, Sudhanshu Sharma and Rupak Banerjee
dc.format.extent vol. 6, no. 6, pp. 3566-3578
dc.language.iso en_US
dc.publisher American Chemical Society
dc.subject Lead-free perovskite
dc.subject Cs3Bi2Cl9-xBrx
dc.subject Photoelectrochemical catalysis
dc.subject CO2 reduction
dc.subject Halide tunability
dc.title Photoelectrochemically induced CO2 reduction using Halide-tunable Lead-free Perovskites
dc.type Journal Paper
dc.relation.journal ACS Applied Energy Materials


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