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Results 1 to 25 of 5259

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A periodic DFT study of ammonia adsorption on the V2O5 (001 ), V2O5 (010) and V2O5 (100) surfaces: Lewis versus Bronsted acid sitesHUICHAO YAO; YU CHEN; YUECHANG WEI et al.Surface science. 2012, Vol 606, Num 21-22, pp 1739-1748, issn 0039-6028, 10 p.Article

Utilization of organogallium and organoindium compounds as alkylation reagents in organic synthesis : the addition of trialkylgallium and trialkylindium to aldehydes catalyzed by Lewis acidsZHENYA DAI; MINGRAN SHAO; XIANSHAN HAU et al.Applied organometallic chemistry. 2005, Vol 19, Num 7, pp 898-902, issn 0268-2605, 5 p.Article

A new electronegativity scale. XII, Intrinsic Lewis acid strength for main-group elementsYU-RAN LUO; BENSON, S. W.Inorganic chemistry (Print). 1991, Vol 30, Num 7, pp 1676-1677, issn 0020-1669, 2 p.Article

Involvement of solid acid on A1- and Ga-doped porous silica in the Diels-Alder reactionSATSUMA, Atsushi; SEGAWA, Yoshihide; YOSHIDA, Hisao et al.Applied catalysis. A, General. 2004, Vol 264, Num 2, pp 229-236, issn 0926-860X, 8 p.Article

Trimethylaluminium-Facilitated Direct Amidation of Carboxylic AcidsCHUNG, Seungwon; UCCELLO, Daniel P; CHOI, Huiwon et al.Synlett (Stuttgart). 2011, Num 14, pp 2072-2074, issn 0936-5214, 3 p.Article

Selective glucose transformation by titania as a heterogeneous Lewis acid catalystNAKAJIMA, Kiyotaka; NOMA, Ryouhei; KITANO, Masaaki et al.Journal of molecular catalysis. A, Chemical. 2014, Vol 388-89, pp 100-105, issn 1381-1169, 6 p.Article

Adsorption of organic probes on silica through Lewis interactions : A comparison of experimental results and quantum chemical calculationsGRANQVIST, B; SANDBERG, T; HOTOKKA, M et al.Journal of colloid and interface science. 2007, Vol 310, Num 2, pp 369-376, issn 0021-9797, 8 p.Article

Principal properties (PPs) for lanthanide triflates as Lewis-acid catalystsFORTUNA, C. G; MUSUMARRA, G; NARDI, M et al.Journal of chemometrics. 2007, Vol 20, Num 8-10, pp 418-424, issn 0886-9383, 7 p.Article

A cluster DFT study of NH3 and NO adsorption on the (MoO2)2+/HZSM-5 surface: Lewis versus Brønsted acid sitesZHIFENG YAN; ZHIJUN ZUO; ZHE LI et al.Applied surface science. 2014, Vol 321, pp 339-347, issn 0169-4332, 9 p.Article

On the reactivity of 23-methoxycarbonyl furospirostanesMACIAS-ALONSO, Mariana; FLORES-ALAMO, Marcos; IGLESIAS-ARTEAGA, Martin A et al.Steroids. 2011, Vol 76, Num 10-11, pp 1021-1031, issn 0039-128X, 11 p.Article

Microbial surface thermodynamics and interactions in aqueous mediaGANG CHEN; STREVETT, Keith A.Journal of colloid and interface science. 2003, Vol 261, Num 2, pp 283-290, issn 0021-9797, 8 p.Article

A microwave promoted and Lewis acid catalysed solventless approach to 4-azasteroidsBORTHAKUR, Moyurima; BORUAH, Romesh C.Steroids. 2008, Vol 73, Num 6, pp 637-641, issn 0039-128X, 5 p.Article

Stereoselective synthesis of α-C-allyl-glycopyranosidesGIANNIS, A; SANDHOFF, K.Tetrahedron letters. 1985, Vol 26, Num 12, pp 1479-1482, issn 0040-4039Article

Ethylzinc hydroxide as an intermediate in the reaction of diethylzinc with waterKURAN, W; CZERNECKA, M.Journal of organometallic chemistry. 1984, Vol 263, Num 1, pp 1-7, issn 0022-328XArticle

Synthesis of a dimeric Lewis X hexasaccharide derivative corresponding to a tumor-associated glycolipidNILSSON, M; NORBERG, T.Carbohydrate research. 1988, Vol 183, Num 1, pp 71-82, issn 0008-6215Article

Tri-lacunary polyoxometalates of Na8H[PW9O34] as heterogeneous Lewis base catalysts for Knoevenagel condensation, cyanosilylation and the synthesis of benzoxazole derivativesSHEN ZHAO; YANG CHEN; SONG, Yu-Fei et al.Applied catalysis. A, General (Print). 2014, Vol 475, pp 140-146, issn 0926-860X, 7 p.Article

4,5-Epoxycholestane-3,6-diols : Templates for generating the full set of eight cholestane-3,5,6-triol stereoisomers in multigram scales, but not for a cholestane-3,4,6-triolKEJUN ZHAO; YONGFENG WANG; LI HAN et al.Steroids. 2007, Vol 72, Num 1, pp 95-104, issn 0039-128X, 10 p.Article

Chiral Lewis acids in catalytic asymmetric reactionsNARASAKA, K.Synthesis (Stuttgart). 1991, Num 1, pp 1-11, issn 0039-7881, 11 p.Article

Regulation of diastereofacial selection in the allylation reaction of N-acyliminium ion utilizing Lewis acidsUKAJI, Y; TSUKAMOTO, K; NASADA, Y et al.Chemistry Letters. 1993, Num 2, pp 221-224, issn 0366-7022Article

Cationic polymerization initiated by intercalation compounds of Lewis acids. Polymerization of cyclosiloxanesRASHKOV, I; GITSOV, I; PANAYOTOV, I et al.Polymer bulletin (Berlin. Print). 1983, Vol 10, Num 11-12, pp 487-490, issn 0170-0839Article

Periodic density functional investigation of lewis acid sites in zeolites : relative strength order as revealed from NH3 adsorptionELANANY, Mohamed; KOYAMA, Michihisa; KUBO, Momoji et al.Applied surface science. 2005, Vol 246, Num 1-3, pp 96-101, issn 0169-4332, 6 p.Article

The use of Lewis acids in the synthesis of 5-arylhydantoinsCATIVIELA, Carlos; FRAILE, José M; GARCIA, José I et al.Journal of catalysis (Print). 2004, Vol 226, Num 1, pp 192-196, issn 0021-9517, 5 p.Article

Acid site properties of thermally stable, silica-doped alumina as a function of silica/alumina ratio and calcination temperatureMARDKHE, Maryam Khosravi; KEYVANLOO, Kamyar; BARTHOLOMEW, Calvin H et al.Applied catalysis. A, General (Print). 2014, Vol 482, pp 16-23, issn 0926-860X, 8 p.Article

Efficient, stable, and reusable Lewis acid-surfactant-combined catalyst: One-pot Biginelli and solvent-free esterification reactionsYUNFENG QIU; HONGNAN SUN; ZHUO MA et al.Journal of molecular catalysis. A, Chemical. 2014, Vol 392, pp 76-82, issn 1381-1169, 7 p.Article

An efficient and convenient microwave-assisted chemical synthesis of (thio)xanthones with additional in vitro and in silico characterizationVERBANAC, Donatella; JAIN, Subhash C; JAIN, Nidhi et al.Bioorganic & medicinal chemistry. 2012, Vol 20, Num 10, pp 3180-3185, issn 0968-0896, 6 p.Article

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