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Results 1 to 25 of 217

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Synthesis of water-soluble FeOOH nanospindles and their performance for magnetic resonance imagingLEYONG ZENG; WENZHI REN; JIANJUN ZHENG et al.Applied surface science. 2012, Vol 258, Num 7, pp 2570-2575, issn 0169-4332, 6 p.Article

The synthesized and thermally modified Mn―Ca―FeOOH composite in persulfate system: Its role to discolor methylene blueJO, Young-Hoon; HONG, Seong-Ho; PARK, Tae-Jin et al.Applied surface science. 2014, Vol 301, pp 576-583, issn 0169-4332, 8 p.Article

Theoretical study of SO2 adsorption on goethite (110) surfaceZUBIET, Carolina E; FORTUNATO, Leandro F; BELELLI, Patricia G et al.Applied surface science. 2014, Vol 314, pp 558-563, issn 0169-4332, 6 p.Article

Parametrization of a classical force field for iron oxyhydroxide/water interfaces based on Density Functional Theory calculationsLARRUCEA, Julen; LID, Steffen; CIACCHI, Lucio Colombi et al.Computational materials science. 2014, Vol 92, pp 343-352, issn 0927-0256, 10 p.Article

Some factors influencing forced hydrolysis of FeCl3 solutionsMUSIC, S; KREHULA, S; POPOVIC, S et al.Materials letters (General ed.). 2003, Vol 57, Num 5-6, pp 1096-1102, issn 0167-577X, 7 p.Article

Electro-optic characteristics of optically interacting β-FeOOH particlesMITEVA, Svetla; STOIMENOVA, Maria.Journal of colloid and interface science. 2004, Vol 274, Num 2, pp 531-537, issn 0021-9797, 7 p.Article

Hydrothermal synthesis and characterization of single crystalline Cu-doped α-FeOOH nanowiresNENGMEI SHEN; XIAOMIN XIANG; XICHUN SHE et al.Applied surface science. 2012, Vol 259, pp 306-310, issn 0169-4332, 5 p.Article

Mechanochemical synthesis of FeSbO4-based materials from FeOOH and Sb2O5 powdersTOJO, Takatoshi; QIWU ZHANG; SAITO, Fumio et al.Powder technology. 2008, Vol 181, Num 3, pp 281-284, issn 0032-5910, 4 p.Article

Properties of γ-FeOOH, α-FeOOH and α-Fe2O3 particles precipitated by hydrolysis of Fe3+ ions in perchlorate containing aqueous solutionsRISTIC, Mira; MUSIC, Svetozar; GODEC, Matjaz et al.Journal of alloys and compounds. 2006, Vol 417, Num 1-2, pp 292-299, issn 0925-8388, 8 p.Article

Solubility and dissolution rate of colloidal γ-FeOOH in seawaterKUMA, K; SUZUKI, Y; MATSUNAGA, K et al.Water research (Oxford). 1993, Vol 27, Num 4, pp 651-657, issn 0043-1354Article

Design of magnetic akaganeite-cyanobacteria hybrid biofilmsDAHOUMANE, Si Amar; DJEDIAT, Chakib; YEPREMIAN, Claude et al.Thin solid films. 2010, Vol 518, Num 19, pp 5432-5436, issn 0040-6090, 5 p.Article

An occurrence of ε-FeOOH in a black shale = Présence de ε-FeOOH dans un schiste noirOSTWALD, J.Mineralogical Magazine. 1985, Vol 49, Num 1, pp 139-140, issn 0026-461XArticle

STUDY OF NEW TYPES OF OXIDES, HAVING HIGH PROTONIC AND LOW ELECTRONIC CONUCTIVITIES, TO BE USED AS ELECTROLYTES IN LOW TEMPERATURE ELECTROLYTIC CELLS FOR WATER VAPOUR ELECTROLYSISSPAZIANTE PM.1980; HYDROGENE AS AN ENERGY VECTOR. INTERNATIONAL SEMINAR/1980/BRUXELLES; NLD/USA/GBR; DORDRECHT: D. REIDEL/BOSTON: D. REIDEL/LONDON: D. REIDEL; DA. 1980; PP. 390-407; BIBL. 19 REF.Conference Paper

Facile fabrication of spindle-shaped β -FeOOH /PAN -amidhydrazone /ag core-shell particles in organic solventZHONGLI LEI; JUNCHAO ZHAO; YALAN LIU et al.Journal of composite materials. 2007, Vol 41, Num 15, pp 1901-1912, issn 0021-9983, 12 p.Article

Structural features in the formation of the green rust intermediate and γ-FeOOHSRINIVASAN, R; LIN, R; SPICER, R. L et al.Colloids and surfaces. A, Physicochemical and engineering aspects. 1996, Vol 113, Num 1-2, pp 97-106, issn 0927-7757, 9 p.Article

The γ-irradiation-induced chemical change from β-FeOOH to Fe3O4SHIZHONG WANG; HOUWEN XIN.Radiation physics and chemistry (1993). 1999, Vol 56, Num 5-6, pp 567-572, issn 0969-806XArticle

Identification of Fluoride and Phosphate Binding Sites at FeOOH SurfacesXIANGBIN DING; XIAOWEI SONG; BOILY, Jean-François et al.Journal of physical chemistry. C. 2012, Vol 116, Num 41, pp 21939-21947, issn 1932-7447, 9 p.Article

Crystallization of Hematite (α-Fe2O3) under Alkaline Condition: The Effects of PbVU, Hong P; SHAW, Samuel; BRINZA, Loredana et al.Crystal growth & design. 2010, Vol 10, Num 4, pp 1544-1551, issn 1528-7483, 8 p.Article

Gold supported iron oxide-hydroxide derived from iron ore tailings for CO oxidationSAKTHIVEL, R; DAS, B; SATPATI, B et al.Applied surface science. 2009, Vol 255, Num 13-14, pp 6577-6581, issn 0169-4332, 5 p.Article

Protonic titanate derived from CsxTi2-x/2Mgx/2O4 (x = 0.7) with lepidocrocite-type layered structureTAO GAO; FJELLVAG, Helmer; NORBY, Poul et al.Journal of material chemistry. 2009, Vol 19, Num 6, pp 787-794, issn 0959-9428, 8 p.Article

Influence of hydrolyzed and nonhydrolyzed Ti, Cr, and Al ions on the formation of β-FeOOH particlesISHIKAWA, Tatsuo; MOTOKI, Taiki; KANDORI, Kazuhiko et al.Journal of colloid and interface science. 2003, Vol 265, Num 2, pp 320-326, issn 0021-9797, 7 p.Article

Preparation and magnetization of hematite nanocrystals with amorphous iron oxide layers by hydrothermal conditionsLI, G. S; SMITH, R. L; INOMATA, H et al.Materials research bulletin. 2002, Vol 37, Num 5, pp 949-955, issn 0025-5408Article

Synthesis of acicular hydrogoethite (α-FeOOH.xH2O; 0.1 < x < 0.22) particles using morphology controlling cationic additives and magnetic properties of maghemite derived from hydrogoethiteSUDAKAR, Chandran; NAGARAJARAO SUBBANNA, G; NARAYANAN KUTTY, T. R et al.Journal of material chemistry. 2002, Vol 12, Num 1, pp 107-116, issn 0959-9428Article

Kinetic study of goethite formation from ferrihydrite in alkaline mediumHAMZAOUI, A; MGAIDI, A; MEGRICHE, A et al.Industrial & engineering chemistry research. 2002, Vol 41, Num 21, pp 5226-5231, issn 0888-5885, 6 p.Article

Synthesis and characterization of α-FeO(OH) nano-rods in situ via a solution-oxidationYONGHONG NI; XUEWU GE; HUARONG LIU et al.Materials letters (General ed.). 2001, Vol 49, Num 3-4, pp 185-188, issn 0167-577XArticle

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