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Results 1 to 25 of 1005

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Study on the hydrogen-transfer abilities of different residue materials and their sub-fractionsJIANG, Ana; AIJUN GUO; ZONGXIAN WANG et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2004, Vol 49, Num 4, pp 397-400, issn 0569-3799, 4 p.Conference Paper

Ultraviolet Laser Induced Hydrogen Transfer Reaction: Study of the First Step of MALDI In-Source Decay Mass SpectrometryASAKAWA, Daiki; CALLIGARIS, David; SMARGIASSO, Nicolas et al.The Journal of physical chemistry. B. 2013, Vol 117, Num 8, pp 2321-2327, issn 1520-6106, 7 p.Article

Hydrogen transfer reactions in solvent augmented coal liquefactionHARRISON, G; ROSS, A. B.Fuel (Guildford). 1998, Vol 77, Num 13, pp 1421-1425, issn 0016-2361Article

The roles of vehicle and gaseous hydrogen during short contact time coal liquefactionUTZ, B. R; APPELL, H. R; BLAUSTEIN, B. D et al.Fuel (Guildford). 1986, Vol 65, Num 8, pp 1085-1089, issn 0016-2361Article

Zur cis-Selektivität bei der Dehydrierung mit ChinonenWEHAGE, H; HEESING, A.Chemische Berichte. 1991, Vol 124, Num 11, pp 2629-2631, issn 0009-2940Article

Transfer of hydrogen from NADPH to NAD+ in frozen aqueous solutionASO, Y; YAMASAKI, N; HATAKEYAMA, T et al.Agricultural and biological chemistry. 1990, Vol 54, Num 8, pp 2187-2188, issn 0002-1369Article

Tin-containing hydrotalcite-like compounds as catalysts for the Meerwein-Ponndorf-Verley reactionJIMENEZ-SANCHIDRIAN, César; RUIZ, José Rafael.Applied catalysis. A, General (Print). 2014, Vol 469, pp 367-372, issn 0926-860X, 6 p.Article

Reversible molecular switch driven by excited-state hydrogen transferSOBOLEWSKI, Andrzej L.PCCP. Physical chemistry chemical physics (Print). 2008, Vol 10, Num 9, pp 1243-1247, issn 1463-9076, 5 p.Article

Measuring the hydrogen donor reactivity and capacity of coalsLARSEN, J. W; SHANG LI; NOMURA, M et al.Energy & fuels. 1998, Vol 12, Num 4, pp 830-831, issn 0887-0624Article

Compositive pyrolysis of coal and coal liquefaction residueHAYASHI, J; KAWAKAMI, T; KUSAKABE, K et al.Nihon Enerugi Gakkaishi. 1993, Vol 72, Num 10, pp 1009-1015, issn 0916-8753Article

Kinetic features of the reactions of hydrogen transfer from donors to model compounds in the presence of hydrogen carriersKRICHKO, A. A; GYUL'MALIEV, A. M; GAGARIN, S. G et al.Solid fuel chemistry. 1993, Vol 27, Num 1, pp 32-36, issn 0361-5219Article

Synergism of Hydrogen and Oil Composition in Noncatalytic Upgrading of Petroleum ResiduesJI, S; ZHOU, Y; GE, D et al.Petroleum science and technology. 2014, Vol 32, Num 21-24, pp 2903-2910, issn 1091-6466, 8 p.Article

Tuning of the H-Transfer Coordinate in Primitive versus Well-Evolved EnzymesYAHASHIRI, Atsushi; HOWELL, Elizabeth E; KOHEN, Amnon et al.ChemPhysChem (Print). 2008, Vol 9, Num 7, pp 980-982, issn 1439-4235, 3 p.Article

Hydrogen transfer from guest molecule to radical in adjacent hydrate-cagesOHGAKI, Kazunari; NAKATSUJI, Kentaro; TAKEYA, Kei et al.PCCP. Physical chemistry chemical physics (Print). 2008, Vol 10, Num 1, pp 80-82, issn 1463-9076, 3 p.Article

Optimization of reaction parameters and cultivation conditions for biocatalytic hydrogen transfer employing overexpressed ADH-'A' from Rhodococcus ruber DSM 44541 in Escherichia coliEDEGGER, K; GRUBER, C. C; FABER, K et al.Engineering in life sciences (Print). 2006, Vol 6, Num 2, pp 149-154, issn 1618-0240, 6 p.Article

Coprocessing of coal/bitumen and hydrogen donorbility of coalSASAKI, M; YOSHIDA, T.Nihon Enerugi Gakkaishi. 1995, Vol 74, Num 5, pp 288-295, issn 0916-8753Article

Mechanism of hydrogen transfer reactions in coals at low temperaturesJIANLI SHEN; TAKANOHASHI, T; IINO, M et al.Nihon Enerugi Gakkaishi. 1995, Vol 74, Num 5, pp 272-279, issn 0916-8753Article

Theoretical study on molecular electronic devices. I: Assessment of switching by hydrogen transfer for pyrazole modelSAKAI, S.Nanotechnology (Bristol. Print). 1995, Vol 6, Num 3, pp 75-80, issn 0957-4484Article

Wasserstoffübertragungen. XIII: (Distickstoff)hydridotris(triphenylphosphan)cobalt(I) als Disproportionierungs-Katalysator = Hydrogen transfer reactions. XIII: Catalysis of disproportionation by (dinitrogen)hydridotris(triphenylphosphine)cobalt(I)BROCK, M; HEESING, A.Chemische Berichte. 1989, Vol 122, Num 10, pp 1925-1927, issn 0009-2940, 3 p.Article

Radical hydrogen-transfer: rationalization of interactive effects of solvent aromaticity and hydrogen pressure on coal liquefactionMCMILLEN, D. F; MALHOTRA, R.Coal science and technology. 1987, Vol 11, pp 193-196, issn 0167-9449Conference Paper

Symposium on Kinetics and Mechanisms of Petroleum ProcessesPreprints - American Chemical Society. Division of Petroleum Chemistry. 2001, Vol 46, Num 4, pp 317-366, issn 0569-3799Conference Proceedings

Influence of catalysts upon hydrogen transfer pathways during hydroliquefaction of coalBACAUD, R.Applied catalysis. 1991, Vol 75, Num 1, pp 105-117, issn 0166-9834Article

Synthesis of 2-deoxy-β-C―-pyranosides by diastereoselective hydrogen atom transferCRICH, D; LIM, L. B. L.Tetrahedron letters. 1990, Vol 31, Num 13, pp 1897-1900, issn 0040-4039, 4 p.Article

Evaluation of the hydrogen shuttling ability of coal liquefaction solventsCHIBA, K; TAGAYA, H; SUZUKI, T et al.SUZUKI, T et al.Bulletin of the Chemical Society of Japan. 1987, Vol 60, Num 7, pp 2669-2670, issn 0009-2673Article

Mechanisms of hydrogen transfer and bond scission of strongly bonded coal structures in donor―solvent systemsMCMILLEN, D. F; MALHOTRA, R; SOU-JEN CHANG et al.Fuel (Guildford). 1987, Vol 66, Num 12, pp 1611-1620, issn 0016-2361Article

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