1 - 3 |
4th International Symposium on Group Five Compounds "Bicentennial Meeting" - April 9-12, 2002 - Toledo, Spain -Foreword Banares MA, Wachs IE |
5 - 11 |
Vanadium to dubnium: from confusion through clarity to complexity Greenwood NN |
13 - 24 |
Molecular structure and reactivity of the Group V metal oxides Wachs IE, Chen Y, Jehng JM, Briand LE, Tanaka T |
25 - 46 |
Chemistry, spectroscopy and the role of supported vanadium oxides in heterogeneous catalysis Weckhuysen BM, Keller DE |
47 - 64 |
Niobium-containing catalysts - the state of the art Ziolek M |
65 - 77 |
Catalytic application of niobium compounds Tanabe K |
79 - 84 |
Activation of propane and butanes over niobium- and tantalum-based oxide catalysts Ushikubo T |
85 - 89 |
Hydrothermal synthesis of vanadium oxide nanotubes from V2O5 gels Chandrappa GT, Steunou N, Cassaignon S, Bauvais C, Livage J |
91 - 104 |
Solid-state V-51 NMR for characterization of vanadium-containing systems Lapina OB, Shubin AA, Khabibulin DF, Terskikh VV, Bodart PR, Amoureux JP |
105 - 115 |
Alumina-supported catalysts for propane oxidative dehydrogenation from mixed VXM(6-X)O19n- (M = W, Mo) hexametalate precursors Franca MCK, San Gil RAD, Eon JG |
117 - 129 |
The catalytic performance of Cs-doped V/Ti/O catalysts in the oxidation of o-xylene to phthalic anhydride: a TPR/TPO and reactivity study Anniballi S, Cavani F, Guerrini A, Panzacchi B, Trifiro F, Fumagalli C, Leanza R, Mazzoni G |
131 - 138 |
Catalytic activity and solid acidity of vanadium oxide thin layer loaded on TiO2, ZrO2, and SnO2 Habuta Y, Narishige N, Okumura K, Katada N, Niwa M |
139 - 147 |
Sub-monolayer V2O5-anatase TiO2 and Eurocat catalysts: IR, Raman and XPS characterisation of VOx dispersion Chiker F, Nogier JP, Bonardet JL |
149 - 157 |
Atomic layer deposition and surface characterization of highly dispersed titania/silica-supported vanadia catalysts Keranen J, Guimon C, Liskola E, Auroux A, Niinisto L |
159 - 170 |
Catalytic performance of a novel ceramic-supported vanadium oxide catalyst for NO reduction with NH3 Tian LQ, Ye DQ, Liang H |
171 - 180 |
Characterisation of alumina-supported vanadium oxide catalysts by kinetic analysis of H-2-TPR data Kanervo JM, Harlin ME, Krause AOI, Banares MA |
181 - 190 |
Preparation and characterisation of vanadium catalysts supported over alumina-pillared clays Vicente MA, Belver C, Trujillano R, Banares-Munoz MA, Rives V, Korili SA, Gil A, Gandia LM, Lambert JF |
191 - 196 |
Methane oxidation over vanadium-modified Pd/Al2O3 catalysts Escandon LS, Ordonez S, Diez F, Sastre H |
197 - 201 |
Polymerisation of pinenes using vanadium oxide supported on activated carbon Encarnacao AC, Flores A, Mota SI, Palma C, Ramos AM, Vital J, Fonseca IM |
203 - 210 |
Adsorption of SO2 using vanadium and vanadium-copper supported on activated carbon Carabineiro SAC, Ramos AM, Vital J, Loureiro JM, Orfao JJM, Fonseca IM |
211 - 217 |
The effect of the framework structure on the chemical properties of the vanadium oxide species incorporated within zeolites Anpo M, Higashimoto S, Matsuoka M, Zhanpeisov N, Shioya Y, Dzwigaj S, Che M |
219 - 228 |
Role of potassium on the structure and activity of alumina-supported vanadium oxide catalysts for propane oxidative dehydrogenation Cortez GG, Fierro JLG, Banares MA |
229 - 236 |
Thermal behaviour, redox properties, and catalytic performance of alkali-promoted V2O5 catalysts in the selective oxidation of p-methoxytoluene: a comparative study Bentrup U, Martin A, Wolf GU |
237 - 245 |
Cr/V/Sb mixed oxide catalysts for the ammoxidation of propane to acrylonitrile - Part I: Nature of the V species Ballarini N, Cavani F, Ghisletti D, Catani R, Cornaro U |
247 - 256 |
High performance of V-Ga-O catalysts for oxidehydrogenation of propane Pujol AP, Valenzuela R, Fuerte A, Wloch E, Kubacka A, Olejniczak Z, Sulikowski B, Corberan VC |
257 - 268 |
Quantitative determination of the number of surface active sites and the turnover frequency for methanol oxidation over bulk metal vanadates Briand LE, Jehng JM, Cornaglia L, Hirt AM, Wachs IE |
269 - 280 |
Vanadyl-aluminum binary phosphate: Al/V ratio influence on their structure and catalytic behavior in the 2-propanol conversion Bautista FM, Campelo JM, Garcia A, Luna D, Marinas JM, Romero AA, Siles MT |
281 - 290 |
Preparation of catalyst precursors for selective oxidation of n-butane by exfoliation-reduction of VOPO4 center dot 2H(2)O in primary alcohol Kamiya Y, Ueki S, Hiyoshi N, Yamamoto N, Okuhara T |
291 - 301 |
The beneficial effect of cobalt on VPO catalysts Cornaglia L, Irusta S, Lombardo EA, Durupty MC, Volta JC |
303 - 310 |
Phase transformations in mesostructured vanadium-phosphorus-oxides Carreon MA, Guliants VV |
311 - 317 |
Defined vanadium phosphorus oxides and their use as highly effective catalysts in ammoxidation of methyl aromatics Martin A, Kalevaru VN, Lucke B |
319 - 325 |
Vanadium peroxocomplexes as oxidation catalysts of sulfur organic compounds by hydrogen peroxide in bi-phase systems Anisimov AV, Fedorova EV, Lesnugin AZ, Senyavin VM, Aslanov LA, Rybakov VB, Tarakanova AV |
327 - 337 |
Catalytic synthesis of methanethiol from hydrogen sulfide and carbon monoxide over vanadium-based catalysts Mul G, Wachs IE, Hirschon AS |
339 - 344 |
Synthesis, characterisation and HDN activity of iron-vanadium sulphide prepared with the use of a chelating agent Magarelli M, Scott CE, Moronta D, Betancourt P |
345 - 351 |
Ziegler-Natta catalysts based on vanadium halides: a DFT study Flisak Z, Szczegot K, Sibelska I, Dawidowska-Marynowicz B |
353 - 364 |
Reactivity of V/Nb mixed oxides in the oxidehydrogenation of propane under co-feed and under redox-decoupling conditions Ballarini N, Cavani F, Cortelli C, Giunchi C, Nobili P, Trifiro F, Catani R, Cornaro U |
365 - 376 |
Nb2O5-supported WO3: a comparative study with WO3/Al2O3 Martin C, Solana G, Malet P, Rives V |
377 - 386 |
Characterization and reactivity of group III oxides supported on niobium oxide Petre AL, Perdigon-Melon JA, Gervasini A, Auroux A |
387 - 396 |
Effect of the oxide support on the propane ammoxidation with Sb-V-O-based catalysts Guerrero-Perez MO, Fierro JLG, Banares MA |
397 - 409 |
Niobium oxide as support material for the oxidative dehydrogenation of propane Cherian M, Rao MS, Deo G |
411 - 417 |
Hyperfine interactions studies on Pt-In/Nb2O5 catalysts Passos FB, Lopes IS, Silva PRJ, Saitovitch H |
419 - 432 |
Abatement of volatile organic compounds: oxidation of ethanal over niobium oxide-supported palladium-based catalysts Brayner R, Cunha DD, Bozon-Verduraz F |
433 - 438 |
Methane conversion over Nb-doped ceria Ramirez-Cabrera E, Laosiripojana N, Atkinson A, Chadwick D |
439 - 447 |
Water-soluble niobium peroxo complexes as precursors for the preparation of Nb-based oxide catalysts Bayot D, Tinant B, Devillers M |
449 - 458 |
Ammonium complex of niobium as a precursor for the preparation of Nb2O5/Al2O3 catalysts Mendes FMT, Perez CA, Soares RR, Noronha FB, Schmal M |
459 - 465 |
Use of Nb2O5 as nickel passivating agent: characterisation of the Ni/Nb2O5/SiO2 system Santos LT, Pereira EB, Homs N, Llorca J, de la Piscina PR, Pereira MM |
467 - 475 |
Characterization and catalytic evaluation of mesoporous and microporous molecular sieves containing niobium Hartmann M, Prakash AM, Kevan L |
477 - 485 |
Mono (V, Nb) or bimetallic (V-Ti, Nb-Ti) ions modified MCM-41 catalysts: synthesis, characterization and catalysis in oxidation of hydrocarbons (aromatics and alcohols) Parvulescu V, Anastasescu C, Constantin C, Su BL |
487 - 498 |
Epoxidation of cyclohexene on Nb-containing meso- and macroporous materials Nowak I, Kilos B, Ziolek M, Lewandowska A |
499 - 505 |
Hydrotreating properties of mixed NbxMo1-xS2 alumina supported catalysts Gaborit V, Allali N, Danot M, Geantet C, Cattenot M, Breysse M, Diehl F |
507 - 512 |
Mo-V-Nb mixed oxides as catalysts in the selective oxidation of ethane Botella P, Nieto JML, Dejoz A, Vazquez MI, Martinez-Arias A |
513 - 518 |
Niobium sulfide as a dopant for Mo/TiO2 catalysts Caero LC, Romero AR, Ramirez J |
519 - 527 |
Ultrafine niobate ceramic powders in the system RExLi1-xNbO3 (RE : La, Pr, Sm, Er) synthesized by polymerizable complex method Popa M, Kakihana M |
529 - 538 |
Dielectric loss and phase transition of sodium potassium niobate ceramic investigated by impedance spectroscopy Nobre MAL, Lanfredi S |
539 - 542 |
Electron microscopy studies on the formation and evolution of sodium niobate nanoparticles from a polymeric precursor Calderon-Moreno JM, Camargo ER |
543 - 553 |
Characterization techniques employed in the study of niobium and tantalum-containing materials Ziolek M, Nowak I |
555 - 560 |
TaON and Ta3N5 as new visible light driven photocatalysts Hara M, Hitoki G, Takata T, Kondo JN, Kobayashi H, Domen K |
561 - 569 |
Photocatalytic water splitting into H-2 and O-2 over various tantalate photocatalysts Kato H, Kudo A |
571 - 579 |
TayNb(1-y)VO(5) (0 < y < 1) mixed oxides synthesized by sol-gel method: electrochemical Li+-insertion Amarilla JM, Perez-Revenga ML, Casal B, Ruiz-Hitzky E |
581 - 581 |
Some evidence refuting the alkenyl mechanism for chain growth in iron-based Fischer-Tropsch synthesis (vol 71, pg 343, 2002) Ndlovu SB, Phala NS, Hearshaw-Timme M, Beagly P, Moss JR, Claeys M, van Steen E |