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dc.contributor.authorDharman, R. K.en
dc.contributor.authorFrancis, B. M.en
dc.contributor.authorPonraj, J. S.en
dc.contributor.authorMuthuvijayan, S.en
dc.contributor.authorManavalan, R. K.en
dc.contributor.authorHarisingh, S.en
dc.contributor.authorBalasubramanian, S.en
dc.contributor.authorDhanabalan, S. C.en
dc.date.accessioned2022-05-12T08:26:29Z-
dc.date.available2022-05-12T08:26:29Z-
dc.date.issued2022-
dc.identifier.citationRealization of Ti MOF/MoS2 Hybrid Nanostructure and Their Catalytic Activity Towards 4-Nitrophenol Reduction / R. K. Dharman, B. M. Francis, J. S. Ponraj et al. // Journal of Materials Research and Technology. — 2022. — Vol. 17. — P. 1760-1769.en
dc.identifier.issn2238-7854-
dc.identifier.otherAll Open Access, Gold3
dc.identifier.urihttp://elar.urfu.ru/handle/10995/111974-
dc.description.abstractThe development of effective catalysts for catalytic reduction of the toxic 4-Nitrophenol (4-NP) into useful 4-Aminophenol (4-AP) has received wide interest. Herein, we report the synthesis of Titanium Metal–Organic Framework (Ti-MOF)/MoS2 hybrid nanostructure as potential catalyst for the reduction of 4-NP. Various characterization tools such as FESEM, TEM, XRD, and XPS have been used to conduct the morphological and structural analysis of the hybrid nano catalyst. The catalytic studies suggest that the as-prepared Ti-MOF, MoS2, and Ti-MOF/MoS2 hybrid nanostructures effectively catalyze the reduction of 4-NP to 4-AP in the presence of NaBH4. The rate constant (Kapp) of MOF/MoS2 hybrid nanostructure is found to be 1.208 min−1, which proves its higher catalytic performance in comparison with the pristine samples. Additionally, its preeminent reusability performance makes MOF/MoS2 hybrid nanostructure to be used as effective and practical catalyst. Through this work, the potential for the heterostructure's high catalytic activity is conversed and a possible reaction mechanism is proposed. Our findings confirm that the hybrid MOF@MoS2 nanoflakes have provided a promising interface for the hydrogenation procedure on the catalytic surface, thereby making it an excellent catalytic material to be further investigated. © 2022 The Authors.en
dc.description.sponsorshipThe authors greatly acknowledge the Photonics Research facility of Aaivalayam-DIRAC, Coimbatore, India for the funding and laboratory support. One of the authors (Manavalan Rajesh Kumar) thanks to the contract no. 40/is2.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherElsevier Editora Ltdaen1
dc.publisherElsevier BVen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceJ. Mater. Res. Technol.2
dc.sourceJournal of Materials Research and Technologyen
dc.subject2D MOLYBDENUM DISULFIDEen
dc.subject4-AMINOPHENOLen
dc.subject4-NITROPHENOLen
dc.subjectCATALYSISen
dc.subjectHYBRID NANOSTRUCTUREen
dc.subjectMETAL–ORGANIC FRAMEWORKen
dc.subjectCATALYST ACTIVITYen
dc.subjectLAYERED SEMICONDUCTORSen
dc.subjectMOLYBDENUM COMPOUNDSen
dc.subjectNANOCATALYSTSen
dc.subjectNANOSTRUCTURESen
dc.subjectRATE CONSTANTSen
dc.subjectREUSABILITYen
dc.subjectSODIUM BOROHYDRIDEen
dc.subject2D MOLYBDENUM DISULPHIDEen
dc.subject4-AMINOPHENOLSen
dc.subject4-NITROPHENOLen
dc.subject4-NITROPHENOL REDUCTIONSen
dc.subjectCATALYTIC REDUCTIONen
dc.subjectHYBRID NANOSTRUCTURESen
dc.subjectMETALORGANIC FRAMEWORKS (MOFS)en
dc.subjectTITANIUM METALSen
dc.subject]+ CATALYSTen
dc.subjectSULFUR COMPOUNDSen
dc.titleRealization of Ti MOF/MoS2 Hybrid Nanostructure and Their Catalytic Activity Towards 4-Nitrophenol Reductionen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1016/j.jmrt.2022.01.069-
dc.identifier.scopus85124171212-
local.contributor.employeeDharman, R.K., Center for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Tamil Nadu, Coimbatore, 641046, India; Francis, B.M., Center for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Tamil Nadu, Coimbatore, 641046, India; Ponraj, J.S., Center for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Tamil Nadu, Coimbatore, 641046, India; Muthuvijayan, S., Center for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Tamil Nadu, Coimbatore, 641046, India, Department of Physics, Kalasalingam University, Tamil Nadu, Srivilliputtur, 626126, India; Manavalan, R.K., Institute of Natural Science and Mathematics, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Harisingh, S., Department of Physics, Centre for Research and Development (CFRD), KPR Institute of Engineering and Technology, Coimbatore, 641407, India; Balasubramanian, S., Department of Physics, Kalasalingam University, Tamil Nadu, Srivilliputtur, 626126, India; Dhanabalan, S.C., Center for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Tamil Nadu, Coimbatore, 641046, Indiaen
local.description.firstpage1760-
local.description.lastpage1769-
local.volume17-
dc.identifier.wos000779130900005-
local.contributor.departmentCenter for Advanced Materials, Aaivalayam-Dynamic Integrated Research Academy and Corporations (DIRAC), Tamil Nadu, Coimbatore, 641046, India; Department of Physics, Kalasalingam University, Tamil Nadu, Srivilliputtur, 626126, India; Institute of Natural Science and Mathematics, Ural Federal University, Yekaterinburg, 620002, Russian Federation; Department of Physics, Centre for Research and Development (CFRD), KPR Institute of Engineering and Technology, Coimbatore, 641407, Indiaen
local.identifier.pure29557689-
local.identifier.eid2-s2.0-85124171212-
local.identifier.wosWOS:000779130900005-
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