dc.creator | De Souza T.E. | |
dc.creator | Mesquita A. | |
dc.creator | De Zevallos A.O. | |
dc.creator | Beron F. | |
dc.creator | Pirota K.R. | |
dc.creator | Neves P.P. | |
dc.creator | Doriguetto A.C. | |
dc.creator | De Carvalho H.B. | |
dc.date | 2013 | |
dc.date | 2015-06-25T19:10:19Z | |
dc.date | 2015-11-26T14:57:19Z | |
dc.date | 2015-06-25T19:10:19Z | |
dc.date | 2015-11-26T14:57:19Z | |
dc.date.accessioned | 2018-03-28T22:09:10Z | |
dc.date.available | 2018-03-28T22:09:10Z | |
dc.identifier | | |
dc.identifier | Journal Of Physical Chemistry C. , v. 117, n. 25, p. 13252 - 13260, 2013. | |
dc.identifier | 19327447 | |
dc.identifier | 10.1021/jp4017129 | |
dc.identifier | http://www.scopus.com/inward/record.url?eid=2-s2.0-84879635081&partnerID=40&md5=e9ec9fcacb6556e49d40a15eada661f6 | |
dc.identifier | http://www.repositorio.unicamp.br/handle/REPOSIP/88488 | |
dc.identifier | http://repositorio.unicamp.br/jspui/handle/REPOSIP/88488 | |
dc.identifier | 2-s2.0-84879635081 | |
dc.identifier.uri | http://repositorioslatinoamericanos.uchile.cl/handle/2250/1255632 | |
dc.description | Nanostructured Co-doped anatase TiO2 (Ti1-xCo xO2-δ) samples were prepared and studied with particular emphasis on their compositional, structural, and magnetic properties. A detailed microstructural analysis was carried out to investigate the nature of the Co incorporation into the anatase TiO2 matrix. By combining different techniques, we confirmed the replacement of Ti4+ by Co 2+ ions in the anatase TiO2 structure. Neither segregated secondary phases nor Co-rich nanocrystals were detected. Co doping was found to introduce oxygen vacancies into the system by means of a charge-compensation process. Superconducting quantum interference device magnetometry demonstrated paramagnetic Curie-Weiss behavior with antiferromagnetic interactions even in the presence of a high density of oxygen vacancies. The fitting of the M(H) curves in the limits of low and high temperatures enable the fractions of isolated and antiferromagnetically coupled Co ions to be extracted. We discuss the observed magnetic behavior of our samples considering the current main theories for the magnetic properties of dilute magnetic oxides. © 2013 American Chemical Society. | |
dc.description | 117 | |
dc.description | 25 | |
dc.description | 13252 | |
dc.description | 13260 | |
dc.description | Ohno, H., Semiconductors: Toward Functional Spintronics (2001) Science, 291, pp. 840-841 | |
dc.description | Wang, M., Campion, R.P., Rushforth, A.W., Edmonds, K.W., Foxon, C.T., Gallagher, B.L., Achieving High Curie Temperature in (Ga, Mn)As (2008) Appl. Phys. Lett., 93, pp. 1321031-1321033 | |
dc.description | Olejník, K., Owen, M.H.S., Novák, V., Mašek, J., Irvine, A.C., Wunderlich, J., Jungwirth, T., Enhanced Annealing, High Curie Temperature, and Low-Voltage Gating in (Ga, Mn)As: A Surface Oxide Study (2008) Phys. Rev. B, 78, pp. 0544031-0544034 | |
dc.description | Chen, L., Yan, S., Xu, P.F., Lu, J., Wang, W.Z., Deng, J.J., Qian, X., Zhao, J.H., Low-Temperature Magnetotransport Behaviours of Heavily Mn-Doped (Ga,Mn)As Films with High Ferromagnetic Transition Temperature (2009) Appl. Phys. Lett., 95, pp. 1825051-1825053 | |
dc.description | Dietl, T., Ohno, H., Matsukura, F., Cibert, J., Ferrand, D., Zener Model Description of Ferromagnetism in Zinc-Blend Magnetic Semiconductors (2000) Science, 287, pp. 1019-1022 | |
dc.description | Matsumoto, Y., Room-Temperatura Ferromagnetism in Transparent Transition Metal-Doped Titanium Dioxide (2001) Science, 291, pp. 854-856 | |
dc.description | Janisch, R., Gopal, P., Spaldin, N.A., Transition Metal-Doped TiO2 and ZnO: Present Status of the Field (2005) J. Phys.: Condens. Matter, 17, pp. R657-R689 | |
dc.description | Matsumoto, Y., Takahashi, R., Murakami, M., Koida, T., Fan, X.-J., Hasegawa, T., Fukumura, T., Koinuma, H., Ferromagnetism in Co-Doped TiO2 Rutile Thin Films Grown by Laser Molecular Beam Epitaxy (2001) Jpn. J. Appl. Phys. Part 2, 40, pp. L1204-L1206 | |
dc.description | Chambers, S.A., Thevuthasan, S., Farrow, R.F.C., Marks, R.F., Thiele, J.U., Folks, L., Samant, M.G., Diebold, U., Epitaxial Growth and Properties of Ferromagnetic Co-Doped TiO2 Anatase (2001) Appl. Phys. Lett., 79, pp. 3467-3469 | |
dc.description | Chambers, S.A., Droubay, T., Wang, C.M., Lea, A.S., Farrow, R.F.C., Folks, L., Deline, V., Anders, S., Clusters and Magnetism in Epitaxial Co-Doped TiO2 Anatase (2003) Appl. Phys. Lett., 82, pp. 1257-1259 | |
dc.description | Kim, J.-Y., Park, J.-H., Park, B.-G., Noh, H.-J., Oh, S.-J., Yang, J., Kim, D.-H., Chen, C.T., Ferromagnetism Induced by Clustered Co in Co-Doped Anatase TiO 2 Thin Films (2003) Phys. Rev. Lett., 90, pp. 0174011-0174014 | |
dc.description | Yan, W., Sun, Z., Pan, Z., Liu, Q., Yao, T., Wu, Z., Song, C., Wei, S., Oxygen Vacancy Effect on Room-Temperature Ferromagnetism of Rutile Co:TiO2 Thin Films (2009) Appl. Phys. Lett., 94, pp. 042508042511-0425083 | |
dc.description | Singhal, R.K., Kumar, S., Kumari, P., Xing, Y.T., Saitovitch, E., Evidence of Defect-Induced Ferromagnetism and Its "switch" Action in Pristine Bulk TiO2 (2011) Appl. Phys. Lett., 98, pp. 092510092511-0925103 | |
dc.description | Quilty, J.W., Shibata, A., Son, J.-Y., Takubo, K., Mizokawa, T., Toyosaki, H., Fukumura, T., Kawasaki, M., Signature of Carrier-Induced Ferromagnetism in Ti1-Cox O 2-δ: Exchange Interaction between High-Spin Co2+ and the Ti 3d Conduction Band (2006) Phys. Rev. Lett., 96, pp. 0272021-0272024 | |
dc.description | Yamada, Y., Fukumura, T., Ueno, K., Kawasaki, M., Control of Ferromagnetism at Room Temperature in (Ti,Co)O 2-δ via Chemical Doping of Electron Carries (2011) Appl. Phys. Lett., 99, pp. 2425021-2425023 | |
dc.description | Calderón, M.J., Das Sarma, S., Theory of Carrier Mediated Ferromagnetism in Diluted Magnetic Oxides (2007) Ann. Phys., 322, pp. 2618-2634 | |
dc.description | Coey, J.M.D., Venkatesan, M., Fitzgerald, C.B., Donor Impurity Band Exchange in Diluted Ferromagnetic Oxides (2005) Nat. Mater., 4, pp. 173-179 | |
dc.description | Griffin, K.A., Pakhomov, A.B., Wang, C.M., Heald, S.M., Krishnan, K.M., Intrinsic Ferromagnetism in Insulating Cobalt Doped Anatase TiO 2 (2005) Phys. Rev. Lett., 94, pp. 1572041-1572044 | |
dc.description | Yamada, Y., Ueno, K., Fukumura, T., Yuan, H.T., Shimotani, H., Iwasa, Y., Gu, L., Kawasaki, M., Electrically Induced Ferromagnetism at Room Temperature in Cobalt-Doped Titanium Dioxide (2011) Science, 332, pp. 1065-1067 | |
dc.description | Chen, Y., Lin, A., Gan, F., Preparation of Nano-TiO2 from TiCl4 by Dialysis Hydrolysis (2006) Powder Technol., 167, pp. 109-116 | |
dc.description | Barsoum, M.W., Series in Materials Science and Engineering (2003) Fundamentals of Ceramics, , IoP: London | |
dc.description | Errico, L.A., Rentería, M., Weissmann, M., Theoretical Study of Magnetism in Transition-Metal-Doped TiO2 and TiO2-δ (2005) Phys. Rev. B, 72, pp. 1844251-1844258 | |
dc.description | Jaffe, J.E., Droubay, T.C., Chambers, S.A., Oxygen Vacancies and Ferromagnetism in CoxTi1-x O2- x - Y (2005) J. Appl. Phys., 97, pp. 0739081-0739086 | |
dc.description | Forro, L., Chauvet, O., Emin, D., Zuppiroli, L., Berger, H., Levy, F., High-Mobility n -Type Charge Carriers in Large Single Crystals of Anatase (TiO2) (1994) J. Appl. Phys., 75, pp. 633-635 | |
dc.description | Woicik, J.C., Nelson, E.J., Kronik, L., Jain, M., Chelikowsky, J.R., Heskett, D., Berman, L.E., Herman, G.S., Hybridization and Bond-Orbital Components in Site-Specific X-ray Photoelectron Spectra of Rutile TiO2 (2002) Phys. Rev. Lett., 89, pp. 0774011-0774014 | |
dc.description | Matsumoto, Y., Murakami, M., Shono, T., Hasegawa, T., Fukumura, T., Kawasaki, M., Ahmet, P., Koinuma, H., Room-Temperature Ferromagnetism in Transparent Transition Metal-Doped Titanium Dioxide (2001) Science, 291, pp. 854-856 | |
dc.description | Chambers, S.A., Heald, S.M., Droubay, T., Local Co Structure in Epitaxial CoxTi1- xO 2-x Anatase (2003) Phys. Rev. B, 67, pp. 1004011-1004014 | |
dc.description | Ogale, S.B., Choudhary, R.J., Buban, J.P., Lofland, S.E., Shinde, S.R., Kale, S.N., Kulkarni, V.N., Venkatesan, T., High Temperature Ferromagnetism with a Giant Magnetic Moment in Transparent Co-Doped SnO2-δ (2003) Phys. Rev. Lett., 91, pp. 0772051-0772054 | |
dc.description | Shinde, S.R., Ogale, S.B., Das Sarma, S., Simpson, J.R., Drew, H.D., Lofland, S.E., Lanci, C., Venkatesan, T., Ferromagnetism in Laser Deposited Anatase Ti1- xCo xO2-δ Films (2003) Phys. Rev. B, 67, pp. 1152111-1152116 | |
dc.description | Pechini, M.P., Method of Preparing Lead and Alkaline Earth Titanates and Niobates and Coating Method Using the Same to Form A Capacitor (1967), U.S. Patent 3,330,697, Jul 11Larson, A.C., Von Dreele, R.B., Los Alamos National Laboratory Report LAUR 86-748 (2000) General Structure Analysis System (GSAS), , Los Alamos National Laboratory: Los Alamos, NM | |
dc.description | Toby, B.H., EXPGUI, a Graphical User Interface for GSAS (2001) J. Appl. Crystallogr., 34, pp. 210-213 | |
dc.description | Michalowicz, A., Moscovici, J., Muller-Bouvet, D., Provost, K., MAX: Multiplataform Applications for XAFS (2009) J. Phys.: Conf. Ser., 190, pp. 0120341-0120344 | |
dc.description | Ankudinov, A.L., Ravel, B., Conradson, S.D., Rehr, J.J., Real-space Multiple-Scattering Calculation and Interpretation of X-ray-Absorption Near-Edge Structure (1998) Phys. Rev. B, 58, pp. 7565-7576 | |
dc.description | Shannon, R.D., Revised Effective Ionic Radii and Systematic Studies of Interatomic Distances in Halides and Chalcogenides (1976) Acta Crystallogr. A, 32, pp. 751-767 | |
dc.description | Swamy, V., Kuznetsov, A., Dubrovinsky, L.S., Caruso, R.A., Shchukin, D.G., Muddle, B.C., Finite-Size and Pressure Effects on the Raman Spectrum Nanocrystalline Anatase TiO2 (2005) Phys. Rev. B, 71, pp. 1843021-18430211 | |
dc.description | Lin, Y.B., Yang, Y.M., Zhuang, B., Huang, S.L., Wu, L.P., Huang, Z.G., Zhang, F.M., Du, Y.W., Ferromagnetism of Co-Doped TiO2 Films Prepared by Plasma Enhanced Chemical Vapour Deposition (PECVD) Method (2008) J. Phys. D: Appl. Phys., 41, pp. 1950071-1950075 | |
dc.description | Orikasa, Y., Ina, T., Nakao, T., Mineshige, A., Amezawa, K., Oishi, M., Arai, H., Uchimoto, Y., X-ray Absorption Spectroscopic Study on La0.6Sr 0.4CoO3-δ Cathode Materials Related with Oxygen Vacancy Formation (2011) J. Phys. Chem. C, 115, pp. 16433-16438 | |
dc.description | Roberts, K.G., Varela, M., Rashkeev, S., Pantelides, S.T., Pennycook, S.J., Krishnan, K.M., Defect-Mediated Ferromagnetism in Insulating Co-doped Anatase TiO 2 Thin Films (2008) Phys. Rev. B, 78, pp. 0144091-0144096 | |
dc.description | Hasnain, S.S., X-ray Absorption Fine Structure (1991) Proceedings of the VI International Conference on X-ray Absorption Fine Structures, , Ellis Horwood: New York | |
dc.description | De Groot, F.M.F., Fuggle, J.C., Thole, B.T., Sawatzky, G.A., L2,3 X-ray Absorption Edges of d0 Compounds: K +, Ca2+, Sc3+, and Ti4+ in O h (Octahedral) Symmetry (1990) Phys. Rev. B, 41, pp. 928-938 | |
dc.description | Nachimuthu, P., Thevuthasan, S., Adams, E.M., Weber, W.J., Begg, B.D., Mun, B.S., Shuh, D.K., Perera, R.C.C., Near-Edge X-ray Absorption Fine Structure Study of Disordering in Gd -2(Ti1- yZry)2O7 Pyrochlores (2005) J. Phys. Chem. B, 109, pp. 1337-1339 | |
dc.description | Jan, J.C., Tsai, H.M., Pao, C.W., Chiou, J.W., Asokan, C.K., Kumar, K.P.K., Pong, W.F., Hsieh, W.F., Direct Experimental Evidence of Hybridization of Pb States with O 2p States in Ferroelectric Perovskite Oxides (2005) Appl. Phys. Lett., 87, pp. 0121031-0121033 | |
dc.description | Jan, J.C., Kumar, K.P.K., Chiou, J.W., Tsai, H.M., Shih, H.L., Hsueh, H.C., Ray, S.C., Hsieh, W.F., Effect of the Ca Content on the Electronic Structure of Pb 1- xCaxTiO3 Perovskites (2003) Appl. Phys. Lett., 83, pp. 3311-3313 | |
dc.description | Kucheyev, S.O., Buuren, T.V., Baumann, T.F., Satcher, J.J.H., Willey, T.M., Meulenberg, R.W., Felter, T.E., Terminello, L.J., Eletronic Structure of Titania Aerogels from Soft X-ray Absorption Spectroscopy (2004) Phys. Rev. B, 69, pp. 2451021-2451027 | |
dc.description | Krüger, P., Multichannel Multiple Scattering Calculation of L-2,L -3-Edge Spectra of TiO2 and SrTiO3: Importance of Multiplet Coupling and Band Structure (2010) Phys. Rev. B, 81, pp. 1251211-1251216 | |
dc.description | Cullity, B.D., Graham, C.D., (1972) Introduction to Magnetic Materials, , Addison-Wesley: Reading | |
dc.description | Rodríguez-Torres, C.E., Cabrera, A.F., Errico, L.A., Adán, C., Requejo, F.G., Weissmann, M., Stewart, S.J., Local Structure and Magnetic Behaviour of Fe-Doped TiO2 Anatase Nanoparticles: Experiments and Calculations (2008) J. Phys.: Condens. Matter, 20, pp. 1352101-1352109 | |
dc.description | Twardowski, A., Swagten, H.J.M., De Jonge, W.J.M., Demianiuk, M., Magnetic Behavior of the Diluted Magnetic Semiconductor Zn 1- xMnxSe (1987) Phys. Rev. B, 36, pp. 7013-7023 | |
dc.description | Lewicki, A., Schindler, A.I., Furdyna, J.K., Giriat, W., Magnetic Susceptibility of Zn1- xCoxS and Zn 1- xCoxSe Alloys (1989) Phys. Rev. B, 40, pp. 2379-2382 | |
dc.description | Alawadhi, H., Miotkowski, I., Lewicki, A., Ramdas, A.K., Miotkowska, S., McElfresh, M., Magnetic Susceptibility and Compositional Dependence of the Energy Gap in Cd1- xCoxTe (2002) J. Phys: Condens. Matter, 14, pp. 4611-4620 | |
dc.description | De Carvalho, H.B., De Godoy, M.P.F., Pais, R.W.D., Mir, M., De Zevallos, A.O., Iikawa, F., Brasil, M.J.S.P., Sabioni, A.C.S., Absence of Ferromagnetic Order in High Quality Bulk Co-Doped ZnO Samples (2010) J. Appl. Phys., 108, pp. 0339141-0339145 | |
dc.description | Kittel, C., (1996) Introduction to Solid State Physics, , Wiley: New York | |
dc.description | Bonanni, A., Navarro-Quezada, A., Li, T., Wegscheider, M., Matej, Z., Holy, V., Lechner, R.T., Dietl, T., Controlled Aggregation of Magnetic Ions in a Semiconductor: An Experimental Demonstration (2008) Phys. Rev. Lett., 101, pp. 1355021-1355024 | |
dc.description | Rossell, M.D., Ramasse, Q.M., Findlay, S.D., Rechberger, F., Erni, R., Niederberger, M., Direct Imaging of Dopant Clustering in Metal-Oxide Nanoparticles (2012) ACS Nano, 6, pp. 7077-7083 | |
dc.description | Singhal, R.K., Samariya, A., Kumar, S., Xing, Y.T., Jain, D.C., Dolia, S.N., Deshpande, U.P., Saitovitch, E.B., Study of Defect-Induced Ferromagnetism in Hydrogenated Anatase TiO 2:Co (2010) J. Appl. Phys., 107, pp. 1139161-1139167 | |
dc.description | Choudhury, B., Choudhury, A., Maidul Islam, A.K.M., Alagarsamy, P., Mukherjee, M., Effect of Oxygen Vacancy and Dopant Concentration on the Magnetic Properties of High Spin Co2+ Doped TiO2 Nanoparticles (2011) J. Magn. Magn. Mater., 323, pp. 440-446 | |
dc.description | Roberts, K.G., Varela, M., Rashkeev, S., Pantelides, S.T., Pennycook, S.J., Krishnan, K.M., Deffect-Mediated Ferromagnetism in Insulating Co-Doped Anatase TiO 2 Thin Films (2008) Phys. Rev. B, 78, pp. 0144091-0144096 | |
dc.description | Ohtsuki, T., Chainani, A., Eguchi, R., Matsunami, M., Takata, Y., Taguchi, M., Nishino, Y., Shin, S., Role of Ti 3d Carriers in Mediating the Ferromagnetism of Co:TiO 2 Anatase Thin Films (2011) Phys. Rev. Lett., 106, pp. 0476021-0476024 | |
dc.description | Singh, V.R., Ishigami, K., Verma, V.K., Shibata, G., Yamazaki, Y., Kataoka, T., Fujimori, A., Kawasaki, M., Ferromagnetism of Cobalt-Doped Anatase TiO2 Studied by Bulk- and Surface-Sensitive Soft X-ray Magnetic Circular Dichroism (2012) Appl. Phys. Lett., 100, pp. 2424041-2424045 | |
dc.language | en | |
dc.publisher | | |
dc.relation | Journal of Physical Chemistry C | |
dc.rights | fechado | |
dc.source | Scopus | |
dc.title | Structural And Magnetic Properties Of Dilute Magnetic Oxide Based On Nanostructured Co-doped Anatase Tio2 (ti1-xco Xo2-δ) | |
dc.type | Artículos de revistas | |