Ana səhifə

J. Mater. Sci. Mater. Electron


Yüklə 1.47 Mb.
səhifə35/45
tarix26.06.2016
ölçüsü1.47 Mb.
1   ...   31   32   33   34   35   36   37   38   ...   45

Worm, H.-U., and S.K. Banerjee, Rock magnetic signature of the Cretaceous-Tertiary boundary, Geophys. Res. Lett., 14, 1083–1086, 1987.

Worm, H.-U., and S.K. Banerjee, An improved thermal paleointensity method (abstract), in IAGA Scientific Assembly, Exeter, UK, 1989.

Worm, H.-U., and S.K. Banerjee, Domain size, closure domains, and the importance of magnetostriction in magnetite (abstract), in IAGA Scientific Assembly, Exeter, UK, 1989.

Worm, H.-U., and S.K. Banerjee, The acquisition of CRM by PSD-titanomagnetite during aqueous low-temperature oxidation (abstract), IUGG Gen. Assem. Abstr., 9, 490, 1987.

Worm, H.-U., V. Böhm, and W. Bosum, Implications for the sources of marine magnetic anomalies derived from magnetic logging in ODP holes 504B and 896A, Proc. ODP Sci. Res., 148, 1996.

Worm, H.-U., D. Clark, and M.J. Dekkers, Magnetic susceptibility of pyrrhotite: grain size, field and frequency dependence, Geophys. J. Int., 114, 127–137, 1993.

Worm, H.-U., and M. Jackson, The superparamagnetism of Yucca Mountain Tuff, J. Geophys. Res. B, 104 (B11), 25,415-25,425, 1999.

Worm, H.-U., and M.J. Jackson, Theoretical time-temperature relationships of magnetization for distributions of single-domain magnetite grains, Geophys. Res. Lett., 15, 1093–1096, 1988.

Worm, H.-U., M.J. Jackson, and S.K. Banerjee, Theoretical time-temperature relationships for assemblages of single-domain magnetic moments (abstract), Eos Trans. Am. Geophys. Union, 69, 1156, 1988.

Worm, H.-U., M.J. Jackson, and S.K. Banerjee, Field and temperature dependence of magnetic viscosity (abstract), in IAGA Scientific Assembly, Exeter, UK, 1989.

Worm, H.-U., M.J. Jackson, S.K. Banerjee, and C.M. Schlinger, Magnetic viscosity of single-domain magnetite particles, J. Appl. Phys., 70, 5533–5537, 1991.

Worm, H.-U., M.J. Jackson, P.R. Kelso, and S.K. Banerjee, Thermal demagnetization of partial thermoremanent magnetization, J. Geophys. Res. B, 93, 12,196–12,204, 1988.

Worm, H.-U., and H. Markert, The preparation of dispersed titanomagnetite particles by the glass-ceramic method, Phys. Earth Planet. Inter., 46, 263–270, 1987.

Worm, H.-U., and H. Markert, Magnetic hysteresis properties of fine particle titanomagnetites precipitated in a silicate matrix, Phys. Earth Planet. Inter., 46, 84–93, 1987.

Worm, H.-U., and C. Rolf, Remanent magnetization of KTB drill cores, Sci. Drilling, in press, 1994.

Worm, H.-U., P. Ryan, and S.K. Banerjee, Domain observations in glass ceramic magnetite by the magneto-optic Kerr effect (MOKE) [news item], Eos Trans. Am. Geophys. Union, 70, 1989.

Worm, H.-U., P.J. Ryan, and S.K. Banerjee, Domain size, closure domains, and the importance of magnetostriction in magnetite, Earth Planet. Sci. Lett., 102, 71–78, 1991.

Worm, H.-U., and C.M. Schlinger, Thermoremanence of single-domain magnetite (abstract), in IAGA Scientific Assembly, Exeter, UK, 1989.

Worm, H.-U., and N. Weinreich, Rock magnetism of pelagic sediments from the equatorial Pacific, Earth Planet. Sci. Lett., 89, 184–192, 1988.

Worsley, T.R., and Y. Herman, Episodic ice-free Arctic Ocean in Pliocene and Pleistocene time: calcareous nannofossils evidence, Science, 210, 323-326, 1980.

Wottrich, R., S. Diabate, and H.F. Krug, Biological effects of ultrafine model particles in human macrophages and epithelial cells in mono- and co-culture, Int. J. Hyg. Environ. Health, 207 (4), 353-361, 2004.

Wright, A.A., U. Bleil, S. Monechi, H.V. Michel, N.J. Shackleton, B.R.T. Simoneit, and J.C. Zachos, 38. Summary of Cretaceous/Tertiary boundary studies, Deep Sea Drilling Project Site 577, Shatsky rise, in Init. Repts. DSDP, edited by G.R. Heath, L.H. Burckle, and e. al., pp. 799-804, Washington, 1985.

Wright, J.P., J.P. Attfield, and P.G. Radaelli, Charge ordered structure of magnetite Fe3O4 below the Verwey transition, Physical Review B, 66 (21), 214422-1-15, 2002.

Wright, J.P., J.P. Attfield, and P.G. Radaelli, Long range charge ordering in magnetite below the Verwey transition, Phys. Rev. Lett., 87 (26), 266401/1-4, 2001.

Wright, J.P., A.M.T. Bell, and J.P. Attfield, Variable temperature powder neutron diffraction study of the Verwey transition in magnetite Fe3O4, Solid State Sci, 2 (8), 747-53, 2000.

Wright, T.M., W. Williams, and D.J. Dunlop, An improved algorithm for micromagnetics, J. Geophys. Res., 102 (B6), 12085-12094, 1997.

Wu, C.Y., S.Q. Li, K. Sassa, Y. Chino, K. Hattori, and S. Asai, Theoretical analysis on crystal alignment of feeble magnetic materials under high magnetic field, Mater. Trans, 46 (6), 1311-1317, 2005.

Wu, E., S.J. Campbell, and W.A. Kaczmarek, A Moessbauer effect study of ball-milled strontium ferrite, J. Magn. Magn. Mater., 8853 (98), 0304-8853, 1998.

Wu, E., S.J. Campbell, W.A. Kaczmarek, M. Hofmann, and S.J. Kennedy, Nanostructured (CoxFe1-x)(3-y)O-4 spinel - mechanochemical synthesis, Z. Metallk, 94 (10), 1127-1133, 2003.

Wu, H.B., X. Wang, and J.M. Chen, Photooxidation of carbonyl sulfide in the presence of the typical oxides in atmospheric aerosol, Sci. China Ser. B-Chem, 48 (1), 31-37, 2005.

Wu, H.B., X. Wang, J.M. Chen, H.K. Yu, H.X. Xue, X.X. Pan, and H.Q. Hou, Mechanism of the heterogeneous reaction of carbonyl sulfide with typical components of atmospheric aerosol, Chin. Sci. Bull., 49 (12), 1231-1235, 2004.

Wu, H.C., S.H. Zhang, Z.X. Li, H.Y. Li, and J. Dong, New paleomagnetic results from the Yangzhuang Formation of the Jixian System, North China, and tectonic implications, Chin. Sci. Bull., 50 (14), 1483-1489, 2005.

Wu, H.-N., R.-X. Zhu, C. Liu, and C.-F. Chang, Paleomagnetic observations in North China Block: from Late Paleozoic to Triassic, Acta Geophys. Sin., 33, 694–701, 1990.

Wu, J.P., C.W. Li, Z.Y. Bao, W.H. Yang, C.G. Zhou, Z.N. Sang, F.L. Li, and S.S. Qu, Heterogeneous transition dynamic equations and the self-organized origin of the nesting rhythmic beddings in Panzhihua lithosomes, Sci. China Ser. D-Earth Sci, 48 (1), 13-20, 2005.

Wu, K.T., and H.K. Huang, Magnetic and optical studies of magnetic colloidal particles in water and oleic acid, J. Appl. Phys., 87 (9, pt.1), 6932-4, 2000.

Wu, K.T., P.C. Kuo, Y.D. Yao, and E.H. Tsai, Magnetic and optical properties of Fe3O4 nanoparticle ferrofluids prepared by coprecipitation technique, IEEE Trans. Magn., 37 (4), 2651-3, 2001.

Wu, K.T., Y.D. Yao, and H.K. Huang, Comparison of dynamic and optical properties of Fe3O4 ferrofluid emulsion in water and oleic acid under magnetic field, J. Magn. Magn. Mater., 209 (1), 246-8, 2000.

Wu, M.Z., Y. Xiong, Y.S. Jia, H.L. Niu, H.P. Qi, J. Ye, and Q.W. Chen, Magnetic field-assisted hydrothermal growth of chain-like nanostructure of magnetite, Chem. Phys. Lett, 401 (4-6), 374-379, 2005.

Wu, M.Z., Y. Xiong, Z.M. Peng, N. Jiang, H.P. Qi, and Q.W. Chen, The enhanced coercivity for the magnetite/silica nanocomposite at room temperature, Mater. Res. Bull, 39 (12), 1875-1880, 2004.

Wu, N.L., S.Y. Wang, C.Y. Han, D.S. Wu, and L.R. Shiue, Electrochemical capacitor of magnetite in aqueous electrolytes, J. Power Sources, 113 (1), 173-8, 2003.

Wu, W.Q., Y.Z. Ruan, and Y. Yu, Influence of Fe2O3 impurity on the crystalline structure of cordierite synthesized from waste aluminum slag, Chin. J. Struct. Chem, 24 (4), 483-487, 2005.

Wu, X.L., W. Zhong, H.Y. Jiang, N.J. Tang, W.Q. Zou, and Y.W. Du, Magnetic properties and thermal stability of gamma '-Fe4N nanoparticles prepared by a combined method of reduction and nitriding, Journal of Magnetism & Magnetic Materials, 281 (1), 77-81, 2004.

Wu, X.L., W. Zhong, N.J. Tang, H.Y. Jiang, W. Liu, and Y.W. Du, Magnetic properties and thermal stability of nanocrystalline epsilon -Fe3N prepared by gas reduction-nitriding method, J. Alloys Compounds, 385, 1-2, 2004.

Wu, X.W., H. Zhou, R.J.M. van de Veerdonk, T.J. Klemmer, C. Liu, N. Shukla, D. Weller, M. Tanase, and D.E. Laughlin, Studies of switching field and thermal energy barrier distributions in a FePt nanoparticle system, J. Appl. Phys., 93 (10 Part 2), 7181-7183, 2003.

Wu, Y.T., M.D. Fuller, and V.A. Schmidt, Microanalysis of NRM in a granodiorite intrusion, Earth Planet. Sci. Lett., 23, 275–285, 1974.

Wu, Y.X., T. Clevenger, and B. Deng, Impacts of goethite particles on UV disinfection of drinking water, Appl. Environ. Microbiol, 71 (7), 4140-4143, 2005.

Wu, Y.Z., C. Won, A. Scholl, A. Doran, H.W. Zhao, X.F. Jin, and Z.Q. Qiu, Magnetic stripe domains in coupled magnetic sandwiches - art. no. 117205, Phys. Rev. Lett., 9311 (11), 7205, 2004.

Wulansari, R., J. Mitchell, J. Blanshard, and J. Paterson, Why are gelatin solutions Newtonian?, Food Hydrocolloids, 12 (2), 245-249, 1998.

Wyatt, B.A., M. Baumgartner, E. Anckar, and H. Grutter, Compositional classification of "kimberlitic" and "non-kimberlitic" ilmenite, Lithos, 77 (1-4), 819-840, 2004.

Wynne, P.J., R.J. Enkin, J. Baker, S.T. Johnston, and C.J.R. Hart, The big flush: paleomagnetic signature of a 70 Ma regional hydrothermal event in displaced rocks of the northern Canadian Cordillera, Can. J. Earth Sci., 35 (6), 657-71, 1998.

Wynne, P.J., E. Irving, J.A. Maxson, and K.L. Kleinspehn, Paleomagnetically determined 90-50 Ma displacement from the coast belt of British Columbia, and shear across the Cordillera, Geol. Soc. Am. Abstr. Prog., 26, A-460, 1995.

Wynne, P.J., E. Irving, J.A. Maxson, and K.L. Kleinspehn, Paleomagnetism of the Upper Cretaceous strata of Mount Tatlow: evidence for 3000 km of northward displacement of the eastern Coast Belt, British Columbia, J. Geophys. Res., 100 (B4), 6073-6091, 1995.

Xia, H., L. Jun, W. Meijia, X. Jinjie, G. Wei, L. Jinghong, B. Yubai, and L. Tiejin, Fabrication of magnetic luminescent nanocomposites by a layer-by-layer self-assembly approach, Chem. Mat, 16 (21), 4022-7, 2004.

Xia, H., G. Wei, Y. Hang, L. Jun, L. Yanmei, M. Lan, B. Yubai, and L. Tiejin, Periodate oxidation of nanoscaled magnetic dextran composites, J. Magn. Magn. Mater., 269 (1), 95-100, 2004.

Xia, Z.C., S.L. Yuan, W. Feng, L.J. Zhang, G.H. Zhang, J. Tang, L. Liu, D.W. Liu, Q.H. Zheng, L. Chen, Z.H. Fang, S. Liu, and C.Q. Tang, Magnetoresistance and transport properties of different impurity doped La0.67Ca0.33MnO3 composite, Solid State Comm., 127 (8), 567-72, 2003.

Xia, Z.C., S.L. Yuan, G.H. Zhang, L.J. Zhang, J. Tang, W. Feng, J. Liu, G. Peng, L. Liu, Z.Y. Li, Q.H. Zheng, L. Cheng, C.Q. Tang, S. Liu, and C.S. Xiong, Effect of low Fe3O4 doping in La0.67Ca0.33MnO3, Journal of Physics D, 36 (3), 217-22, 2003.

Xiang, L., Y.P. Yin, and Y. Jin, Hydrothermal formation of Ni-Zn ferrite from heavy metal co-precipitates, J. Mater. Sci., 37 (2), 349-52, 2002.

Xiang, L., Y.P. Yin, and Y. Jin, Hydrothermal preparation of nickel hydroxide coated iron oxide particles, Mater. Lett, 59 (17), 2223-2228, 2005.

Xianqiao, L., M. Zhiya, X. Jianmin, and L. Huizhou, Preparation and characterization of amino-silane modified superparamagnetic silica nanospheres, J. Magn. Magn. Mater., 270, 1-2, 2004.

Xiansong, L., Z. Wei, G. Benxi, and Y. Du, Exchange-coupling interaction in nanocomposite SrFe12O19/ gamma -Fe2O3 permanent ferrites, J. Appl. Phys., 92 (2), 1028-32, 2002.

Xiao, J.-L., S.C. Porter, Z.-S. An, H. Kumai, and S. Yoshikawa, Grain size of quartz as an indicator of winter monsoon strength on the loess plateau of central China during the last 130,000 yr, Quat. Res., 43, 22–29, 1995.

Xiao, W.J., B.F. Windley, D.Y. Liu, P. Jian, C.Z. Liu, C. Yuan, and M. Sun, Accretionary tectonics of the Western Kunlun Orogen, China: A Paleozoic-early Mesozoic, long-lived active continental margin with implications for the growth of southern Eurasia, J. Geol., 113 (6), 687-705, 2005.

Xiaodong, T., and K.P. Kodama, Compaction-corrected inclinations from southern California Cretaceous marine sedimentary rocks indicate no paleolatitudinal offset for the Peninsular Ranges terrane, J. Geophys. Res., 103 (B11), 27169-92, 1998.

Xiaofeng, L., Y. Youhai, C. Liang, M. Huaping, G. Han, W. Jue, Z. Wanjin, and W. Yen, Aniline dimer-COOH assisted preparation of well-dispersed polyaniline-Fe3O4 nanoparticles, Nanotechnology, 16 (9), 1660-5, 2005.

Xiaomin, F., L. Jijun, E. Derbyshire, E.A. Fitzpatrick, and R.A. Kemp, Micromorphology of the Beijuan loess-paleosol sequence in Gansu Province, China: geomorphological and paleoenvironmental significance, Palaeogeogr. Palaeoclimatol. Palaeoecol., 111, 289-303, 1994.

Xiaowei, T., and Y. Hong, Synthesis of magnetic nanocomposites and alloys from platinum-iron oxide core-shell nanoparticles, Nanotechnology, 16 (7), 93808-7, 2005.

Xiaoxi, L., T. Nagai, and F. Itoh, Magnetic and magneto -optical properties of Fe/Fe3O4 multilayers prepared by pulsed laser deposition, J. Magn. Magn. Mater., 240 (1), 430-2, 2002.

Xiao-Yu, Z., and C. Ya-Jie, Influence of temperature on percolative behavior in Fe3O4/C composite, J. Magn. Magn. Mater., 271 (2-3), 184-9, 2004.

Xie, S., J.A. Dearing, and J. Bloemendal, A partial susceptibility approach to analysing the magnetic properties of environmental materials: a case study, Geophys. J. Int., 138, 851-856, 1999.

Xie, Y.N., and J.A. Blackman, Magnetic anisotropy of nanoscale cobalt particles, Journal of Physics-Condensed Matter, 16 (18), 3163-3172, 2004.

Xin, H., and P.R. Buseck, Unusual forms of magnetite in the Orgueil carbonaceous chondrite, Meteoritics & Planetary Science, 33 (4, suppl.iss), A215-20, 1998.

Xin, X., Z. Xu, Z. Huan, C. Depu, and F. Weiyang, Preparation and application of surface-coated superparamagnetic nanobeads in the isolation of genomic DNA, J. Magn. Magn. Mater., 277 (1-2), 16-23, 2004.

Xing, Y.C., T.P. Kole, and J.L. Katz, Shape-controlled synthesis of iron oxide nanoparticles, J. Mater. Sci. Lett., 22 (11), 787-790, 2003.

Xiong, C.M., J.R. Sun, and B.G. Shen, Dependence of magnetic anisotropy of the La0.67Ca0.33MnO3 films on substrate and film thickness, Solid State Comm., 134 (7), 465-469, 2005.

Xiong, C.M., J.R. Sun, D.J. Wang, G.J. Liu, H.W. Zhang, and B.G. Shen, Dependence of the coercivity of La0.67Ca0.33MnO3 films on substrate and thickness, Chin. Phys, 14 (3), 604-609, 2005.

Xiong, S.F., W.Y. Jiang, S.L. Yang, Z.L. Ding, and T.S. Liu, Northwestward decline of magnetic susceptibility for the red clay deposit in the Chinese Loess Plateau, Geophys. Res. Lett., 29 (24), 15-1, 2002.

Xiong, Y.J., Z.Q. Li, X.X. Li, B. Hu, and Y. Xie, Thermally stable hematite hollow nanowires, Inorg. Chem, 43 (21), 6540-6542, 2004.

Xiong, Y.M., T. Chen, G.Y. Wang, X.H. Chen, X. Chen, and C.L. Chen, Raman spectra in epitaxial thin films of La1-xCaxMnO3 (x=0.33, 0.5) grown on different substrates - art. no. 094407, Physical Review B, 7009 (9), 4407, 2004.

Xiong, Y.M., G.Y. Wang, X.G. Luo, C.H. Wang, X.H. Chen, X. Chen, and C.L. Chen, Magnetotransport properties in La1-xCaxMnO3 (x=0.33, 0.5) thin films deposited on different substrates - art. no. 083909, J. Appl. Phys., 97 (8), 83909, 2005.

Xixi, Z., R.S. Coe, C. Ki-Hong, P. Soon-Ok, S.K. Omarzai, Z. Rixiang, Z. Yaoxiu, S. Gilder, and Z. Zhong, Clockwise rotations recorded in Early Cretaceous rocks of South Korea: implications for tectonic affinity between the Korean Peninsula and North China, Geophys. J. Int., 139 (2), 447-63, 1999.

Xu, C.J., K.M. Xu, H.W. Gu, R.K. Zheng, H. Liu, X.X. Zhang, Z.H. Guo, and B. Xu, Dopamine as a robust anchor to immobilize functional molecules on the iron oxide shell of magnetic nanoparticles, J. Am. Chem. Soc, 126 (32), 9938-9939, 2004.

Xu, M., C.R.H. Bahl, C. Frandsen, and S. Morup, Interparticle interactions in agglomerates of a-Fe2O3 nanoparticles: influence of grinding, J. Colloid Interface Sci, 279 (1), 132-136, 2004.

Xu, M., and P.J. Ridler, Linear dichroism and birefringence effects in magnetic fluids, J. Appl. Phys., 82 (1), 326-332, 1997.

Xu, M.W., S.J. Bao, and X.G. Zhang, Enhanced photocatalytic activity of magnetic TiO2 photocatalyst by silver deposition, Mater. Lett, 59 (17), 2194-2198, 2005.

Xu, M.-X., Magneto-optical effect in the composite magnetic fluids, Journal of Infrared and Millimeter Waves, 18 (3), 253-6, 1999.

Xu, R.K., A.Z. Zhao, and G.L. Ji, Effect of low molecular weight organic anions on adsorption of potassium by variable charge soils, Commun. Soil Sci. Plant Anal, 36 (7-8), 1029-1039, 2005.

Xu, S., and D. Dunlop, Toward a better understanding of the Lowrie-Fuller test, J. Geophys. Res. B, 100, 22,533-22,542, 1995.

Xu, S., and D.J. Dunlop, Thellier paleointensity determination using PSD and MD grains (abstr.), Eos Trans. Am. Geophys. Union, 76, suppl., F170, 1995.

Xu, S., and D.J. Dunlop, Micromagnetic modeling of Bloch walls with Neel caps in magnetite, Geophys. Res. Lett., 23 (20), 2819-2822, 1996.

Xu, S., and D.J. Dunlop, Theory of alternating field demagnetization of multidomain grains and implications for the origin of pseudo-single-domain remanence, J. Geophys. Res. B, 98, 4183–4190, 1993.

Xu, S., and D.J. Dunlop, Theory of partial thermoremanent magnetization in multidomain grains: II. Effect of microcoercivity distribution and comparison with experiment, J. Geophys. Res. B, 99, 9025–9033, 1994.

Xu, S., D.J. Dunlop, and A.J. Newell, Micromagnetic modeling of two-dimensional domain structures in magnetite, J. Geophys. Res. B, 99, 9035–9044, 1994.

Xu, S., and R.T. Merrill, Toward a better understanding of magnetic screening in multidoamin grains, Journal of Geomag. Geoelectr., 42, 637-652, 1990.

Xu, S., and R.T. Merrill, Towards a better understanding of magnetic screening in multidomain grains, J. Geomagn. Geoelectr., 42, 637–652, 1990.

Xu, S., and R.T. Merrill, The demagnetizing factors in multidomain grains, J. Geophys. Res. B, 92, 10,657–10,665, 1987.

Xu, S., and R.T. Merrill, Microstress and microcoercivity in multidomain grains, J. Geophys. Res. B, 94, 10,627–10,636, 1989.

Xu, S., and R.T. Merrill, Thermal variations of domain wall thickness and number of domains in magnetic rectangular grains, J. Geophys. Res. B, 95, 21,433–21,440, 1990.

Xu, S., and R.T. Merrill, Microcoercivity, bulk coercivity, and saturation remanence in multidomain materials, J. Geophys. Res. B, 95, 7083–7090, 1990.

Xu, S., and R.T. Merrill, Stress, grain size, and magnetic stability of magnetite, J. Geophys. Res. B, 97, 4321–4329, 1992.

Xu, S.J., W. Tong, J.Y. Fan, J. Gao, C.Z. Zha, and Y.H. Zhang, Influence of doped Dy on magnetic and electronic properties in La0.67-xDyxSr0.33MnO3, Journal of Magnetism & Magnetic Materials, 288, 92-105, 2005.

Xu, T.-C., and T.-S. Liu, Implication of the magnetic susceptibility curve from the Chinese loess profile at Xifeng, Quat. Sci. Rev., 12, 249–254, 1993.

Xu, T.F., J.A. Apps, and K. Pruess, Mineral sequestration of carbon dioxide in a sandstone-shale system, Chem. Geol., 217 (3-4), 295-318, 2005.

Xu, W., J.W. Geissman, R. Van der Voo, and D.R. Peacor, Electron microscopy of iron oxides and implications for the origin of magnetizations and rock magnetic properties of Banded Series rocks of the Stillwater Complex, Montana, J. Geophys. Res., 102 (B6), 12139-12157, 1997.

Xu, W., D.P. Peacor, R.V. der Voo, W. Dollase, and R. Beaubouef, Modified lattice parameter/Curie temperature diagrams for titanomagnetite/titanomaghemite within the quadrilateral Fe3O4-Fe2TiO4-Fe2O3-Fe2TiO5, Geophys. Res. Lett., 23 (20), 2811-2814, 1996.

Xu, W.H., Y.G. Liu, G.M. Zeng, X. Li, C.F. Tang, and X.Z. Yuan, Enhancing effect of iron on chromate reduction by Cellulomonas flavigena, J. Hazard. Mater, 126 (1-3), 17-22, 2005.

Xu, W.M., G.Y. Machavariani, G.K. Rozenberg, and M.P. Pasternak, Mossbauer and resistivity studies of the magnetic and electronic properties of the high-pressure phase of Fe3O4 - art. no. 174106, Physical Review B, 7017 (17), 4106, 2004.

Xu, W.-X., R. Van der Voo, and D.R. Peacor, Are magnetite spherules capable of carrying stable magnetizations?, Geophys. Res. Lett., 21, 517–520, 1994.

Xu, W.Y., Z.G. Wei, and G.H. Xia, Regional features of the secular variation of the geomagnetic field in China for 2000, Acta Geophys. Sin., 48 (3), 551-560, 2005.

Xu, X.N., Y. Wolfus, A. Shaulov, Y. Yeshurun, I. Felner, I. Nowik, Y. Koltypin, and A. Gedanken, Annealing study of Fe2O3 nanoparticles: Magnetic size effects and phase transformations, J. Appl. Phys., 91 (7), 4611-16, 2002.

Xu, X.Q., H. Shen, J.R. Xu, J. Xu, X.J. Li, and X.M. Xiong, Core-shell structure and magnetic properties of magnetite magnetic fluids stabilized with dextran, Applied Surface Science, 252 (2), 494-500, 2005.

Xu, X.Q.A.-S.H.A.-X.J.R.A.-L.X.J., Aqueous-based magnetite magnetic fluids stabilized by surface small micelles of oleolysarcosine, Applied Surface Science, 221, 1-4, 2004.

Xu, Z., Y. Fan, R. Mafhoum, R. Karim, A. Tebano, G. Balestrino, V.G. Harris, and C. Vittoria, Manganese ferrite grown at the atomic scale, IEEE Trans. Magn., 40 (4), 2811-13, 2004.

Xu, Z.Z., C.C. Wang, W.L. Yang, Y.H. Deng, and S.K. Fu, Encapsulation of nanosized magnetic iron oxide by polyacrylamide via inverse miniemulsion polymerization, J. Magn. Magn. Mater., 277 (1-2), 136-43, 2004.

Xue, D.S., C.X. Gao, Q.F. Liu, and L.Y. Zhang, Preparation and characterization of haematite nanowire arrays, J. Phys. Condens. Matt., 15 (9), 1455-1459, 2003.

Xue, D.S., and F.S. Li, Fe-57 Mossbauer study of magnetic nanowires, Hyperfine Interact., 156 (1), 31-40, 2004.

Xue, D.-S., L.-Y. Zhang, C.-X. Gao, X.-F. Xu, and A.-B. Gui, Synthesis, Mossbauer spectra and magnetic properties of quasi-one-dimensional Fe3O4 nanowires, Chin. Phys. Lett, 21 (4), 733-6, 2004.

Xue, D.S., L.Y. Zhang, A.B. Gui, and X.F. Xu, Fe3O4 nanowire arrays synthesized in AAO templates, Appl. Phys. A-Mater. Sci. Process, 80 (2), 439-442, 2005.

Xue, D.S., L.Y. Zhang, and F.S. Li, Synthesis and Mossbauer study of maghemite nanowire arrays, Hyperfine Interact., 156 (1), 41-46, 2004.

Xue, J.M., Z. Zhou, and J. Wang, Nanocrystalline maghemite ( gamma -Fe2O3) in silica by mechanical activation of precursors, J. Am. Ceram. Soc., 85 (4), 807-11, 2002.

Xue, J.M., Z.H. Zhou, and J. Wang, Synthesis of nanocrystalline gamma -Fe2O3 in silica matrix by mechanical crystallization from precursor at room temperature, Materials Chemistry and Physics, 75 (1), 81-5, 2002.

1   ...   31   32   33   34   35   36   37   38   ...   45


Verilənlər bazası müəlliflik hüququ ilə müdafiə olunur ©atelim.com 2016
rəhbərliyinə müraciət