Show simple item record

dc.contributor.authorKoverga A.A
dc.contributor.authorGómez-Marín A.M
dc.contributor.authorFlórez E
dc.contributor.authorTicianelli E.A.
dc.date.accessioned2023-10-24T19:23:56Z
dc.date.available2023-10-24T19:23:56Z
dc.date.created2023
dc.identifier.issn1694332
dc.identifier.urihttp://hdl.handle.net/11407/7891
dc.description.abstractThe interaction of single Fe, Co, Ni, and Cu atoms with polar terminations of orthorhombic Mo2C(0 0 1) surface has been investigated at low surface coverage by using density functional theory. Calculations indicate high stability of all considered adsorbates, regardless the surface termination. The presence of a single foreign atom has a localized impact on the properties of the surface, causing charge redistribution in the adsorbate/surface interface. As the result lowering of the work function is observed for both Mo2C(0 0 1) terminations. Another effect is shifting the position of d-band center further away from the Fermi level for surface Mo atoms of metal-terminated carbide, while no changes are seen for carbon's near-Fermi level electronic states in the case of C-terminated modified surface. Results demonstrate a short-range effect on the stability of atomic hydrogen caused by the foreign adatom on both terminations. Specifically, the observed adsorption energy weakening would entail an enhancement in the catalytic activity of Mo2C toward hydrogen evolution reaction according to the Sabatier principle. Results evidence that molybdenum carbide modified by cobalt and iron is expected to be more active toward hydrogen evolution reaction than Mo2C modified by nickel and copper or than unmodified carbide. © 2023 Elsevier B.V.eng
dc.language.isoeng
dc.publisherElsevier B.V.
dc.relation.isversionofhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85162261754&doi=10.1016%2fj.apsusc.2023.157498&partnerID=40&md5=22caef8b2d0e6f8f7d574ec468662ddd
dc.sourceAppl Surf Sci
dc.sourceApplied Surface Scienceeng
dc.subjectAdatom decorationeng
dc.subjectDFTeng
dc.subjectDopingeng
dc.subjectHEReng
dc.subjectMolybdenum carbideeng
dc.titleChanges in fundamental and catalytic properties of β-molybdenum carbide decorated by a single atom of Fe, Co, Ni and Cueng
dc.typeArticle
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccess
dc.publisher.programCiencias Básicasspa
dc.type.spaArtículo
dc.identifier.doi10.1016/j.apsusc.2023.157498
dc.relation.citationvolume631
dc.publisher.facultyFacultad de Ciencias Básicasspa
dc.affiliationKoverga, A.A., Instituto de Quimica de São Carlos, Universidade de São Paulo, SP, São Carlos, 13560-960, Brazil
dc.affiliationGómez-Marín, A.M., Department of Chemistry, Division of Fundamental Sciences, Technological Institute of Aeronautics, SP, São Jose dos Campos, 12228-900, Brazil
dc.affiliationFlórez, E., Grupo de Investigacion Mat&mpac, Facultad de Ciencias Básicas, Universidad de Medellín, Medellín, Colombia
dc.affiliationTicianelli, E.A., Instituto de Quimica de São Carlos, Universidade de São Paulo, SP, São Carlos, 13560-960, Brazil
dc.relation.referencesWolter, B., Pullen, M.G., Baudisch, M., Sclafani, M., Hemmer, M., (2015) Phys. Rev. X, 5 (2)
dc.relation.referencesEsposito, D.V., Hunt, S.T., Kimmel, Y.C., Chen, J.G., (2012) J. Am. Chem. Soc., 134 (6), pp. 3025-3033
dc.relation.referencesMichalsky, R., Zhang, Y.-J., Peterson, A.A., (2014) ACS Catal., 4 (5), pp. 1274-1278
dc.relation.referencesTrasatti, S., (1972) J. Electroanal. Chem. Interfacial Electrochem., 39 (1), pp. 163-184
dc.relation.referencesNørskov, J.K., Bligaard, T., Logadottir, A., Kitchin, J.R., Chen, J.G., Pandelov, S., Stimming, U., (2005) J. Electrochem. Soc., 152 (3), pp. J23-J26
dc.relation.referencesGreeley, J., Jaramillo, T.F., Bonde, J., Chorkendorff, I., Nørskov, J.K., (2006) Nat. Mater., 5 (11), pp. 909-913
dc.relation.referencesSheng, W., Myint, M., Chen, J.G., Yan, Y., (2013) Energ. Environ. Sci., 6 (5), pp. 1509-1512
dc.relation.referencesLevy, R.B., Boudart, M., (1973) Science, 181 (4099), pp. 547-549
dc.relation.referencesWirth, S., Harnisch, F., Weinmann, M., Schröder, U., (2012) Appl Catal B, 126 (25), pp. 225-230
dc.relation.referencesVrubel, H., Hu, X., , pp. 12703-12706. , Angewandte Chemie Int. Ed. 2012, 51 (51)
dc.relation.referencesPrats, H., Piñero, J.J., Viñes, F., Bromley, S.T., Sayós, R., Illas, F., (2019) Chem. Commun., 55 (85), pp. 12797-12800
dc.relation.referencesKoverga, A.A., Florez, E., Dorkis, L., Rodriguez, J.A., (2019) J. Phys. Chem. C, 123 (14), pp. 8871-8883
dc.relation.referencesGan, J., Li, F., Tang, Y., Tang, Q., (2020) ChemSusChem, 13 (22), pp. 6005-6015
dc.relation.referencesMorse, J.R., Juneau, M., Baldwin, J.W., Porosoff, M.D., Willauer, H.D., (2020) J. CO2 Util., 35, pp. 38-46
dc.relation.referencesGu, T., Sa, R., Zhang, L., Li, D.-S., Wang, R., (2021) Appl. Catal. B, 296 (5)
dc.relation.referencesNie, Z., Tang, Z., Jiao, D., Yuan, M., Zhao, J., Lai, Q., Liang, Y., (1885) ChemCatChem, 2022, p. e20210
dc.relation.referencesZhao, W., Guan, Z., Li, D., Wang, B., Fan, M., Zhang, R., (2022) ACS Appl. Mater. Interfaces, 14 (17), pp. 19491-19504
dc.relation.referencesMerki, D., Hu, X., (2011) Energ. Environ. Sci., 4 (10), pp. 3878-3888
dc.relation.referencesMerki, D., Vrubel, H., Rovelli, L., Fierro, S., Hu, X., (2012) Chem. Sci., 3 (8), pp. 2515-2525
dc.relation.referencesChen, W.F., Muckerman, J.T., Fujita, E., (2013) Chem. Commun., 49 (79), pp. 8896-8909
dc.relation.referencesChen, W.F., Wang, C.H., Sasaki, K., Marinkovic, N., Xu, W., Muckerman, J.T., Zhu, Y., Adzic, R.R., (2013) Energy Environ. Sci., 6, pp. 943-951
dc.relation.referencesVrubel, H., Moehl, T., Grätzel, M., Hu, X., (2013) Chem. Commun., 49 (79), pp. 8985-8987
dc.relation.referencesYoun, D.H., Han, S., Kim, J.Y., Kim, J.Y., Park, H., Choi, S.H., Lee, J.S., (2014) ACS Nano, 8 (5), pp. 5164-5173
dc.relation.referencesRegmi, Y.N., Waetzig, G.R., Duffee, K.D., Schmuecker, S.M., Thode, J.M., Leonard, B.M., (2015) J. Mater. Chem. A, 3 (18), pp. 10085-10091
dc.relation.referencesGómez-Marín, A.M., Ticianelli, E.A., (2016) Electrochim. Acta, 220, pp. 363-372
dc.relation.referencesWu, S., Chen, M., Wang, W., Zhou, J., Tang, X., Zhou, D., Liu, C., (2021) Carbon, 171, pp. 385-394
dc.relation.referencesWan, C., Leonard, B.M., (2015) Chem. Mater., 27 (12), pp. 4281-4288
dc.relation.referencesXiong, K., Li, L., Zhang, L., Ding, W., Peng, L., Wang, Y., Wei, Z., (2015) J. Mater. Chem. A, 3 (5), pp. 1863-1867
dc.relation.referencesGómez-Marín, A.M., Ticianelli, E.A., (2017) Appl. Catal. B, 209, pp. 600-610
dc.relation.referencesKoverga, A.A., Gómez-Marín, A.M., Dorkis, L., Flórez, E., Ticianelli, E.A., (2020) ACS Appl. Mater. Interfaces, 12 (24), pp. 27150-27156
dc.relation.referencesWatanabe, M., Horiuchi, M., Motoo, S., (1988) J. Electroanal. Chem. Interfacial Electrochem., 250 (1), pp. 117-125
dc.relation.referencesMey, D., Brunet, S., Canaff, C., Maugé, F., Bouchy, C., Diehl, F., (2004) J. Catal., 227 (2), pp. 436-447
dc.relation.referencesKwon, Y., Hersbach, T.J., Koper, M., (2014) Top. Catal., 57 (14), pp. 1272-1276
dc.relation.referencesTsai, C., Chan, K., Nørskov, J.K., Abild-Pedersen, F., (2015) Cat. Sci. Technol., 5 (1), pp. 246-253
dc.relation.referencesSong, X., Dong, M., Li, Y., Wu, Y., Sun, Y., Yuan, G., Li, Y., (2020) Chem. Phys. Lett., 761
dc.relation.referencesKoverga, A.A., Gomez-Marin, A.M., Flórez, E., (2022) J. Phys. Chem. C, 126 (24), pp. 10167-10180
dc.relation.referencesKoverga, A.A., Florez, E., Gomez-Marin, A.M., (2023) Appl. Surf. Sci., 608
dc.relation.referencesEsposito, D.V., Chen, J.G., (2011) Energ. Environ. Sci., 4 (10), p. 3900
dc.relation.referencesKelly, T.G., Hunt, S.T., Esposito, D.V., Chen, J.G., (2013) Int. J. Hydrogen Energy, 38 (14), pp. 5638-5644
dc.relation.referencesVasic Anicijevic, D.D., Nikolic, V.M., Marceta-Kaninski, M.P., Pašti, I.A., (2013) Int. J. Hydrogen Energy, 38, p. 1607
dc.relation.referencesVasić, D.D., Paŝti, I.A., Mentus, S.V., (2013) Int. J. Hydrogen Energy, 38 (12), pp. 5009-5018
dc.relation.referencesPosada-Perez, S., Viñes, F., Rodriguez, J.A., Illas, F., (2015) J. Chem. Phys., 143 (11)
dc.relation.referencesKoverga, A.A., Florez, E., Dorkis, L., Rodriguez, J.A., (2020) PCCP, 22 (24), pp. 13666-13679
dc.relation.referencesKoverga, A.A., Florez, E., Jimenez-Orozco, C., Rodriguez, J.A., (2021) Electrochim. Acta, 368
dc.relation.referencesKoverga, A.A., Florez, E., Jimenez-Orozco, C., Rodriguez, J.A., (2021) PCCP, 23 (36), pp. 20255-20267
dc.relation.referencesdos Santos Politi, J.R., Viñes, F., Rodriguez, J.A., Illas, F., (2013) PCCP, 15 (30), p. 12617
dc.relation.referencesPage, K., Li, J., Savinelli, R., Szumila, H.N., Zhang, J., Stalick, J.K., Seshadri, R., (2008) Solid State Sci., 10 (11), pp. 1499-1510
dc.relation.referencesHugosson, H.W., Jansson, U., Johansson, B., Eriksson, O., (2001) Chem. Phys. Lett., 333 (6), pp. 444-450
dc.relation.referencesKresse, G., Hafner, J., (1993) Phys. Rev. B, 47 (1), pp. 558-561
dc.relation.referencesKresse, G., Hafner, J., (1994) Phys. Rev. B, 49 (20), pp. 14251-14269
dc.relation.referencesKresse, G., Furthmuller, J., (1996) Phys. Rev. B, 54 (16), pp. 11169-11186
dc.relation.referencesKresse, G., Furthmuller, J., (1996) Comput. Mater. Sci., 6, pp. 15-50
dc.relation.referencesPerdew, J.P., Burke, K., Ernzerhof, M., (1996) Phys. Rev. Lett., 77 (18), pp. 3865-3868
dc.relation.referencesBlöchl, P.E., (1994) Phys. Rev. B, 50 (24), pp. 17953-17979
dc.relation.referencesKresse, G., Joubert, D., (1999) Phys. Rev. B, 59 (3), pp. 1758-1775
dc.relation.referencesGrimme, S., (2004) J. Comput. Chem., 25 (12), pp. 1463-1473
dc.relation.referencesGrimme, S., Antony, J., Ehrlich, S., Krieg, H., (2010) J. Chem. Phys., 132 (15)
dc.relation.referencesMonkhorst, H.J., Pack, J.D., (1976) Phys. Rev. B, 13 (12), pp. 5188-5192
dc.relation.referencesMethfessel, M., Paxton, A.T., (1989) Phys. Rev. B, 40 (6), pp. 3616-3621
dc.relation.referencesKitchin, J.R., Nørskov, J.K., Barteau, M.A., Chen, J.G., (2005) Catal. Today, 105 (1), pp. 66-73
dc.relation.referencesPosada-Perez, S., Viñes, F., Ramirez, P.J., Vidal, A.B., Rodriguez, J.A., Illas, F., (2014) PCCP, 16 (28), pp. 14912-14921
dc.relation.referencesPosada-Perez, S., Viñes, F., Valero, R., Rodriguez, J.A., Illas, F., (2017) Surf. Sci., 656, pp. 24-32
dc.relation.referencesBader, R.F.W., Atoms in Molecules: A Quantum theory (1990), Oxford University Press Oxford, U.K
dc.relation.referencesHenkelman, G., Arnaldsson, A., Jónsson, H., (2006) Comput. Mater. Sci, 36 (3), pp. 354-360
dc.relation.referencesOtani, S., Ishizawa, Y., (1995) J. Cryst. Growth, 154 (1-2), pp. 202-204
dc.relation.referencesVojvodic, A., (2012) Catal. Lett., 142 (6), pp. 728-735
dc.relation.referencesYu, G.-Q., Huang, B.-Y., Chen, X., Wang, D., Zheng, F., Li, X.-B., (2019) J. Phys. Chem. C, 123 (36), pp. 21878-21887
dc.relation.referencesWan, J., Liu, Q., Wang, T., Yuan, H., Zhang, P., Gu, X., (2018) Solid State Commun., 284-286, pp. 25-30
dc.relation.referencesGuillermet, A.F., Häglund, J., Grimvall, G., (1992) Phys. Rev. B, 45 (20), pp. 11557-11567
dc.relation.referencesViñes, F., Sousa, C., Liu, P., Rodriguez, J.A., Illas, F., (2005) J. Chem. Phys., 122 (17)
dc.relation.referencesZheng, X., Li, L., Li, J., Wei, Z., (2019) PCCP, 21 (6), pp. 3242-3249
dc.relation.referencesDietze, E.M., Grönbeck, H., (2020) ChemPhysChem, 21 (21), pp. 2407-2410
dc.relation.referencesYan, K., Maark, T.A., Khorshidi, A., Sethuraman, V.A., Peterson, A.A., Guduru, P.R., (2016) Angew. Chem., 128 (21), pp. 6283-6289
dc.relation.referencesYan, K., , pp. 6177-6183. , S. K.
dc.relation.referencesKim, A. Khorshidi, P. R. Guduru, A. A. Peterson, J. Phys. Chem. C 2017, 121 (11)
dc.relation.referencesCampbell, R.A., , pp. 7077-7087. , J. A.
dc.relation.referencesRodriguez, D. W. Goodman, Physical Review B 1992, 46 (11)
dc.relation.referencesPašti, I.A., Mentus, S.V., (2009) Russ. J. Phys. Chem. A, 83 (9), pp. 1531-1536
dc.relation.referencesPašti, I.A., Mentus, S.V., (2010) J. Alloy. Compd., 497 (1-2), pp. 38-45
dc.relation.referencesAnićijević, D.D.V., Nikolić, V.M., Kaninski, M.P.M., Pašti, I.A., (2015) Int. J. Hydrogen Energy, 40 (18), pp. 6085-6096
dc.relation.referenceshttp://goldbook.iupac.org/I03046.html, IUPAC Gold Book. (accessed Apr. 2023)
dc.relation.referencesAllred, A.L., (1961) J. Inorg. Nucl. Chem., 17 (3-4), pp. 215-221
dc.relation.referencesMichaelides, A., Hu, P., Lee, M.-H., Alavi, A., King, D.A., (2003) Phys. Rev. Lett., 90 (24)
dc.relation.referencesBagus, P.S., Kafer, D., Witte, G., Woll, C., (2008) Phys. Rev. Lett., 100
dc.relation.referencesRoman, T., Groß, A., (2013) Phys. Rev. Lett., 110 (15)
dc.relation.referencesGossenberger, F., Roman, T., Forster-Tonigold, K., Groß, A., (2014) Beilstein J. Nanotechnol., 5, pp. 152-161
dc.relation.referencesWang, J., Wang, S.-Q., (2015) Appl. Surf. Sci., 357, pp. 1046-1052
dc.relation.referencesMaark, T.A., Peterson, A.A., (2014) J. Phys. Chem. C, 118 (8), pp. 4275-4281
dc.relation.referencesKitchin, J.R., Nørskov, J.K., Barteau, M.A., Chen, J.G., (2004) Phys. Rev. Lett., 93 (15)
dc.relation.referencesSheng, W., Zhuang, Z., Gao, M., Zheng, J., Chen, J.G., Yan, Y., (2015) Nat. Commun., 6 (1), pp. 1-6
dc.relation.referencesZheng, J., Sheng, W., Zhuang, Z., Xu, B., Yan, Y., (2016) Sci. Adv., 2 (3), p. e1501602
dc.relation.referencesBligaard, T., Nørskov, J.K., Dahl, S., Matthiesen, J., Christensen, C.H., Sehested, J., (2004) J. Catal., 224 (1), pp. 206-217
dc.relation.referencesQuaino, P., Juarez, F., Santos, E., Schmickler, W., (2014) Beilstein J. Nanotechnol., 5, pp. 846-854
dc.relation.referencesBjörketun, M.E., Bondarenko, A.S., Abrams, B.L., Chorkendorff, I., Rossmeisl, J., (2010) PCCP, 12 (35), pp. 10536-10541
dc.relation.referencesMichalsky, R., Zhang, Y.-J., Medford, A.J., Peterson, A.A., (2014) J. Phys. Chem. C, 118 (24), pp. 13026-13034
dc.relation.referencesHammer, B., Nørskov, J.K., (1995) Surf. Sci., 343 (3), pp. 211-220
dc.relation.referencesAnićijević, D.D.V., Nikolić, V.M., Kaninski, M.P.M., Pašti, I.A., (2013) Int. J. Hydrogen Energy, 38 (36), pp. 16071-16079
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.identifier.reponamereponame:Repositorio Institucional Universidad de Medellín
dc.identifier.repourlrepourl:https://repository.udem.edu.co/
dc.identifier.instnameinstname:Universidad de Medellín


Files in this item

FilesSizeFormatView

There are no files associated with this item.

This item appears in the following Collection(s)

Show simple item record