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Results 1 to 25 of 5847

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Conversion of campholene- to necrodane-type monoterpenes. A short stereoselective synthesis of (-)-(R,R)-β-necrodol and its three stereoisomersSCHULTE-ELTE, K. H; PAMINGLE, H.Helvetica chimica acta. 1989, Vol 72, Num 5, pp 1158-1163, issn 0018-019X, 6 p.Article

A novel access to ionone-type compounds: (E)-4-oxo-β-ionone and (E)-4-oxo-β-irone via metal-catalyzed, intramolecular reactions of α-diazo ketones with furansWENKERT, E; DECORZANT, R; NÄF, F et al.Helvetica chimica acta. 1989, Vol 72, Num 4, pp 756-766, issn 0018-019X, 11 p.Article

The palladium-mediated cross-coupling of bromotropolones with organostannanes; application to concise syntheses of β-dolabrin, β-thujaplicin, 7-methoxy-4-isopropyltropolone, and β-thujaplicinolBANWELL, M. G; COLLIS, M. P; CRISP, G. T et al.Journal of the Chemical Society. Chemical communications. 1989, Num 10, pp 616-617, issn 0022-4936, 2 p.Article

Characterization of the Monoterpene Synthase Gene tps26, the Ortholog of a Gene Induced by Insect Herbivory in Maize : Plant-herbivore interactionsCHANGFA LIN; BINZHANG SHEN; ZHENNAN XU et al.Plant physiology (Bethesda). 2008, Vol 146, Num 3, pp 940-951, issn 0032-0889, 12 p.Article

Opportunistic emissions of volatile isoprenoidsOWEN, Susan M; PENUELAS, Josep.Trends in plant science. 2005, Vol 10, Num 9, pp 420-426, issn 1360-1385, 7 p.Article

An application of air-sampling canisters: Selective herbivory associated with monoterpene emission from ponderosa pineJUNG, Peter P; BOWER, Nathan W; SNYDER, Marc A et al.American laboratory (Fairfield). 2001, Vol 33, Num 4, pp 50-52, issn 0044-7749, 2 p.Article

Mechanisms of antibacterial action of three monoterpenesTROMBETTA, Domenico; CASTELLI, Francesco; GRAZIA SARPIETRO, Maria et al.Antimicrobial agents and chemotherapy. 2005, Vol 49, Num 6, pp 2474-2478, issn 0066-4804, 5 p.Article

1-p-Menthene-3,6-diol, a monoterpeneDELORD, T. J; MALCOLM, A. J; FONCZEK, F. R et al.Acta crystallographica. Section C, Crystal structure communications. 1988, Vol 44, Num 4, pp 765-767, issn 0108-2701Article

Natural abundance deuterium NMR as a novel probe of monoterpene biosynthesis: limoneneLEOPOLD, M. F; EPSTEIN, W. W; GRANT, D. M et al.Journal of the American Chemical Society. 1988, Vol 110, Num 2, pp 616-617, issn 0002-7863Article

Structure of the naturally occurring iridoid glycosides 3,4-dihydrounedoside pentaacetate, C24H32O14, and pulchelloside II hydrate, C17H26O12•H2OSTRUMPEL, M; JIANG-TSUN CHEN; BUSCHMANN, J et al.Acta crystallographica. Section B, Structural science. 1988, Vol 44, Num 2, pp 187-193, issn 0108-7681Article

A new potential source of citral: an improved clone of Cymbopogon pendulusSHARMA, J. R; LAL, R. K; MISHRA, H. O et al.Current science (Bangalore). 1987, Vol 56, Num 1, pp 30-31, issn 0011-3891Article

Synthesis of (±)-marmelo oxides by a radical cyclization reactionSRIKRISHNA, A; KRISHNAN, K.Journal of organic chemistry. 1989, Vol 54, Num 16, pp 3981-3983, issn 0022-3263, 3 p.Article

The influence of speciating monoterpene emissions and chemistry on modelled secondary organic aerosol concentrations and compositionBARTHELMIE, R. J; PRYOR, S. C.Journal of aerosol science. 2000, Vol 31, pp S58-S59, issn 0021-8502, SUP1Article

Biosynthesis of monoterpenes: enantioselectivity in the enzymatic cyclization of (+)- and (-)-bornyl pyrophosphateCROTEAU, R; SATTERWHITE, D. M; CANE, D. E et al.The Journal of biological chemistry (Print). 1986, Vol 261, Num 29, pp 13438-13445, issn 0021-9258Article

Umlagerung von Dehydrolinalool zu Citral und von Linaloo zu Geraniol = Passage du déhydrolinalool au citral et du linalool au géraniol = The rearrangement of dehydrolinalool to citral and of linalool to geraniolCERVENY, L; RUZICKA, V.Parfümerie und Kosmetik. 1988, Vol 69, Num 1, pp 9-16, issn 0031-1952, 5 p.Article

Monoterpenoids. VI: On the optical purity of (+)-car-3-ene from Pinus roxburghii, and the source of racemization of (-)-menthol derived therefromMISRA, A. N; SOMAN, R; DEV, S et al.Tetrahedron (Oxford. Print). 1988, Vol 44, Num 22, pp 6941-6946, issn 0040-4020Article

Interconversion and cyclization of acyclic allylic pyrophosphates in the biosynthesis of cyclic monoterpenoids in higher plantsSUGA, T; HIRATA, T; AOKI, T et al.Phytochemistry. 1986, Vol 25, Num 12, pp 2769-2775, issn 0031-9422Article

Biotransformation of monoterpenes by Oocystis pusillaGHASEMI, Younes; MOHAGHEGHZADEH, Abdolali; MOSHAVASH, Maryam et al.World journal of microbiology & biotechnology. 2009, Vol 25, Num 7, pp 1301-1304, issn 0959-3993, 4 p.Article

Biosynthesis of monoterpenes : stereochemistry of the coupled isomerization and cyclization of geranyl pyrophosphate to camphane and isocamphane monoterpenesCROTEAU, R; GERSHENZON, J; WHEELER, C. J et al.Archives of biochemistry and biophysics (Print). 1990, Vol 277, Num 2, pp 374-381, issn 0003-9861, 8 p.Article

A touch of lavender: gas-phase structure and dynamics of the monoterpene linalool validated by microwave spectroscopyHA VINH LAM NGUYEN; MOUHIB, Halima; KLAHM, Sebastian et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 25, pp 10012-10018, issn 1463-9076, 7 p.Article

Temporal changes in the leaf monoterpenes of Sequoia sempervirensHALL, G. D; LANGENHEIM, J. H.Biochemical systematics and ecology. 1986, Vol 14, Num 1, pp 61-69, issn 0305-1978Article

Monoterpenoid phloroacetophenones from Euodia latifoliaGOH, S. H; CHUNG, V. C; SHA, C. K et al.Phytochemistry. 1990, Vol 29, Num 5, pp 1704-1706, issn 0031-9422Article

A rangewide comparison of outlying and central lodgepole pine populations based on oleoresin monoterpene analysisFORREST, G. I.Biochemical systematics and ecology. 1987, Vol 15, Num 1, pp 19-30, issn 0305-1978Article

Four new dimeric monoterpene alkaloids from Scaevola racemigera Daniker (Goodeniaceae)SKALTSOUMIS, A.-L; TILLEQUIN, F; KOCH, M et al.Heterocycles (Sendai). 1987, Vol 26, Num 3, pp 599-605, issn 0385-5414Article

Xylem resin monoterpene composition of Pinus halepensis Mill in IsraelSCHILLER, G; GRUNWALD, C.Israel Journal of Botany. 1986, Vol 35, Num 1, pp 23-33, issn 0021-213XArticle

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