Advances in Clean Fuel Ethanol Production from CO2 Reduction

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Catalysts 2020, 10, 1287 25 of 25 100. Zou,J.-P.;Wu,D.-D.;Luo,J.;Xing,Q.-J.;Luo,X.-B.;Dong,W.-H.;Luo,S.-L.;Du,H.-M.;Suib,S.L.AStrategy for One-Pot Conversion of Organic Pollutants into Useful Hydrocarbons through Coupling Photodegradation of MB with Photoreduction of CO2. ACS Catal. 2016, 6, 6861–6867. [CrossRef] 101. AbouAsi,M.;He,C.;Su,M.;Xia,D.;Lin,L.;Deng,H.;Xiong,Y.;Qiu,R.;Li,X.-Z.Photocatalyticreductionof CO2 to hydrocarbons using AgBr/TiO2 nanocomposites under visible light. Catal. Today 2011, 175, 256–263. [CrossRef] 102. Mao,J.;Peng,T.;Zhang,X.;Li,K.;Ye,L.;Zan,L.Effectofgraphiticcarbonnitridemicrostructuresonthe activity and selectivity of photocatalytic CO2 reduction under visible light. Catal. Sci. Technol. 2013, 3, 1253. [CrossRef] 103. He,Y.;Wang,Y.;Zhang,L.;Teng,B.;Fan,M.High-efficiencyconversionofCO2tofueloverZnO/g-C3N4 photocatalyst. Appl. Catal. B Environ. 2015, 168, 1–8. [CrossRef] 104. He, Y.; Zhang, L.; Teng, B.; Fan, M. New application of Z-scheme Ag3 PO4 /g-C3 N4 composite in converting CO2 to fuel. Environ. Sci. Technol. 2015, 49, 649–656. [CrossRef] [PubMed] 105. Bai, S.; Wang, X.; Hu, C.; Xie, M.; Jiang, J.; Xiong, Y. Two-dimensional g-C3N4: An ideal platform for examining facet selectivity of metal co-catalysts in photocatalysis. Chem. Commun. 2014, 50, 6094–6097. [CrossRef] 106. Vu,N.-N.;Nguyen,C.-C.;Kaliaguine,S.;Do,T.-O.ReducedCu/Pt-HCa2Ta3O10PerovskiteNanosheetsfor Sunlight-Driven Conversion of CO2 into Valuable Fuels. Adv. Sustain. Syst. 2017, 1. [CrossRef] 107. Wang,A.;Shen,S.;Zhao,Y.;Wu,W.PreparationandcharacterizationsofBiVO4/reducedgrapheneoxide nanocomposites with higher visible light reduction activities. J. Colloid Interface Sci. 2015, 445, 330–336. [CrossRef] 108. Han,Q.;Zhou,Y.;Tang,L.;Li,P.;Tu,W.;Li,L.;Li,H.;Zou,Z.Synthesisofsingle-crystalline,porousTaON microspheres toward visible-light photocatalytic conversion of CO2 into liquid hydrocarbon fuels. RSC Adv. 2016, 6, 90792–90796. [CrossRef] 109. Abou Asi, M.; Zhu, L.; He, C.; Sharma, V.K.; Shu, D.; Li, S.; Yang, J.; Xiong, Y. Visible-light-harvesting reduction of CO2 to chemical fuels with plasmonic Ag@AgBr/CNT nanocomposites. Catal. Today 2013, 216, 268–275. [CrossRef] 110. Cai,B.;Wang,J.;Gan,S.;Han,D.;Wu,Z.;Niu,L.AdistinctiveredAg/AgClphotocatalystwithefficient photocatalytic oxidative and reductive activities. J. Mater. Chem. A 2014, 2, 5280–5286. [CrossRef] 111. Jeyalakshmi,V.;Mahalakshmy,R.;Krishnamurthy,K.R.;Viswanathan,B.Strontiumtitanateswithperovskite structure as photo catalysts for reduction of CO2 by water: Influence of co-doping with N, S & Fe. Catal. Today 2018, 300, 152–159. [CrossRef] 112. Tang,L.;Kuai,L.;Li,Y.;Li,H.;Zhou,Y.;Zou,Z.ZnxCd1-xStunablebandstructure-directingphotocatalytic activity and selectivity of visible-light reduction of CO2 into liquid solar fuels. Nanotechnology 2018, 29. [CrossRef] 113. Halmann,M.Photoelectrochemicalreductionofaqueouscarbondioxideonp-typegalliumphosphidein liquid junction solar cells. Nature 1978, 275, 115–116. [CrossRef] 114. Cheng, J.; Zhang, M.; Wu, G.; Wang, X.; Zhou, J.; Cen, K. Photoelectrocatalytic Reduction of CO2 into Chemicals Using Pt-Modified Reduced Graphene Oxide Combined with Pt-Modified TiO2 Nanotubes. Environ. Sci. Technol. 2014, 48, 7076–7084. [CrossRef] 115. Sagara,N.;Kamimura,S.;Tsubota,T.;Ohno,T.PhotoelectrochemicalCO2reductionbyap-typeboron-doped g-C3N4 electrode under visible light. Appl. Catal. B Environ. 2016, 192, 193–198. [CrossRef] 116. Cardoso,J.C.;Stulp,S.;deBrito,J.F.;Flor,J.B.S.;Frem,R.C.G.;Zanoni,M.V.B.MOFsbasedonZIF-8deposited on TiO2 nanotubes increase the surface adsorption of CO2 and its photoelectrocatalytic reduction to alcohols in aqueous media. Appl. Catal. B Environ. 2018, 225, 563–573. [CrossRef] Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

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