[1] GALLEZOT P.Catalytic routes from renewables to fine chemicals [J].Catalysis Today,2007,121(1/2):76-91.
[2] WENDER P A,GLASS T E,KRAUSS N E.Approaches to taxol and taxol analogs through elaboration of aromatic c-ring precursors [J].Journal of Organic Chemistry,1996,61(22):7662-7663.
[3] WENDER P A,MUCCIARO T P.A new and practical approach to the synthesis of taxol and taxol analogs:the pinene path [J].Journal of the American Chemical Society,1992,114(14):5878-5879.
[4] WENDER P A,WESSJOHANN L A,PESCHKE B,et al.The pinene path to taxol:Readily accessible α-ring building blocks based on novel alkyl- and alkenyllithium reagents with internal carbonyl groups [J].Tetrahedron Lett,1995,36(40):7181-7184.
[5] 尤坚萍,唐辉.蒎烯环氧化反应催化体系的研究进展[J].化工生产与技术,2005,12(2):19-22.
[6] 付朝晖,刘图强,陈金珠,等.环氧蒎烷的合成研究与分析[J].江西林业科技,2004(6):28-30.
[7] 钟旭东,程芝.蒎烯环氧化及其产物的催化异构化反应的研究[J].林产化学与工业,1993,13(3):177-186.
[8] 马艾华,胡庭维,陕邵云,等.NaY分子筛负载金属Salen催化剂催化α-蒎烯环氧化[J].林产化学与工业,2014,34(5):115-121.
[9] 俞忠华,周作良,吴卫,等.2,3-环氧蒎烷的合成[J].江西科学,2012,30(4):448-449.
[10] CHATTOPADHYAY T,KOGISO M,ASAKAWA M,et al.Copper(Ⅱ)-coordinated organic nanotube:A novel heterogeneous catalyst for various oxidation reactions [J].Catalysis Communications,2010,12(1):9-13.
[11] TANGESTANINEJAD S,MIRKHANI V,MOGHADAM M,et al.Readily prepared heterogeneous molybdenum-based catalysts as highly recoverable,reusable and active catalysts for alkene epoxidation [J].Catalysis Communications,2007,8(5):839-844.
[12] MOGHADAM M,MIRKHANI V,TANGESTANINEJAD S,et al.Epoxidation of α-pinene catalyzed by methyltrioxorhenium(Ⅶ):Influence of additives,oxidants and solvents [J].Journal of Molecular Catalysis A:Chemical,2011,340(1/2):9-14.
[13] TANGESTANINEJAD S,MOGHADAM M,MIRKHANI V,et al.Efficient epoxidation of alkenes with sodium periodate catalyzed by reusable manganese(Ⅲ) salophen supported on multiwall carbon nanotubes [J].Applied Catalysis A:General,2010,381(1/2):233-241.
[14] HATEFI M,MOGHADAM M,MIRKHANI V,et al.Silica supported Ru(salophen)Cl:An efficient and robust heterogeneous catalyst for epoxidation of alkenes with sodium periodate [J].Polyhedron,2010,29(15):2953-2958.
[15] MOGHADAM M,MIRKHANI V,TANGESTANINEJAD S,et al.Highly efficient epoxidation of alkenes with sodium periodate catalyzed by reusable polystyrene-bound ruthenium(Ⅱ) salophen [J].Journal of the Iranian Chemical Society,2011,8(4):1019-1029.
[16] OLGA B,FANTIN G,FOGAGNOLO M.A simple and efficient oxidation procedure for the synthesis of acid-sensitive epoxides [J].Synthesis,2009(7):1123-1126.
[17] ACCOLTI L,ANNESE C,RICCARDIS A D,et al.Dioxirane-mediated heterogeneous epoxidations with potassium caroate:A solid catalyst bearing anchored ketone moieties [J].European Journal of Organic Chemistry,2012,2012(24):4616-4621.
[18] DAVID C T,ALEJANDRO L M,FRANCISCO B.Non-heme iron catalysis in C=C,C-H,and CH2 oxidation reactions.Oxidative transformations on terpenoids catalyzed by Fe(bpmen)(OTf)2[J].Tetrahedron,2013,69(14):2977-2986.
[19] ISLAM S M,PAUL S,MOBAROK M,et al.Oxidation of organic compounds by hydrogen peroxide using polymer-anchored azo-metal catalysts [J].Transition Metal Chemistry,2013,38(1):7-14.
[20] GUO X F,KIM G J.Synthesis of Ti-Salen complex immobilized MFI-Zeolite having mesoporous system as active catalyst for olefin epoxidation [J].Topics in Catalysis,2010,53:510-516.
[21] YAMAZAKI S.An effective procedure for the synthesis of acid-sensitive epoxides:Use of 1-methylimidazole as the additive on methyl-trioxorhenium-catalyzed epoxidation of alkenes with hydrogen peroxide [J].Organic & Biomolecular Chemistry,2010(10):2377-2385.
[22] SKOBELEV I Y,KUDRIK E V,ZALOMAEVA O V,et al.Efficient epoxidation of olefins by H2O2 catalyzed by iron “helmet” phthalocyanines [J].Chemical Communications,2013,49:5577-5579.
[23] VENTURELLO C,D'ALOISIO R.Ammonium quaternary tetrakis(diperoxotungsto)phosphates(3-) as a new class of catalysts for efficient alkene epoxidation with hydrogen peroxide [J].Journal of Organic Chemistry,1988,53(7):1553-1557.
[24] KON Y,HACHIYA H,ONO Y,et al.An effective synthesis of acid-sensitive epoxides via oxidation of terpenes and styrenes using hydrogen peroxide under organic solvent-free conditions [J].Synthesis,2011(7):1092-1098.
[25] HACHIYA H,KON Y,ONO Y,et al.Unique salt effect on highly selective synthesis of acid-labile terpene and styrene oxides with a tungsten/H2O2 catalytic system under acidic aqueous conditions [J].Synthesis,2012,44(11):1672-1678.
[26] HAJIAN R,TANGESTANINEJAD S,MOGHADAM M,et al.[PZnMO2W9O39]5- immobilized on ionic liquid-modified silica as a heterogeneous catalyst for epoxidation of olefins with hydrogen peroxide [J].Comptes Rendus Chimie,2012,15(11/12):975-979.
[27] MOURET A,LECLERCQ L,M HLBAUER A.Eco-friendly solvents and amphiphilic catalytic polyoxometalate nanoparticles:a winning combination for olefin epoxidation [J].Green Chemistry,2014(1):269-278.
[28] QI B,LOU L L,YU K,et al.Selective epoxidation of alkenes with hydrogen peroxide over efficient and recyclable manganese oxides [J].Catalysis Communications,2011,15(1):52-55.
[29] MAKWANA V D,SON Y C,HOWELL A R,et al.The role of lattice oxygen in selective benzyl alcohol oxidation using OMS-2 catalyst:A kinetic and isotope-labeling study [J].Journal of Catalysis,2002:46-52.
[30] PARDESHI S K,PAWAR R Y.SrFe2O4 complex oxide an effective and environmentally benign catalyst for selective oxidation of styrene [J].Journal of Molecular Catalysis A:Chemical,2011,334:35-43.
[31] BENJAMIN S L,MATTHEW V,VICTORIA J D,et al.Manganese-catalyzed epoxidations of alkenes in bicarbonate solutions [J].J Am Chem Soc,2002,124(40):11946-11954.
[32] DONG J J,SAISAHA P,TIM G,et al.Oxidation of alkenes with H2O2 by an in situ prepared Mn(Ⅱ)/pyridine-2-carboxylic acid catalyst and the role of ketones in activating H2O2 [J].ACS Catalysis,2012,2(6):1087-1096.
[33] QI B,LOU L L,WANG Y B,et al.Comparison of different prepared Mn-MCM-41 catalysts in the catalytic epoxidation of alkenes with 30 H2O2 [J].Microporous and Mesoporous Materials,2014,190:275-283.
[34] PR ECH J,KUBU。 M,C EJKA J.Synthesis and catalytic properties of titanium containing extra-large pore zeolite CIT-5 [J].Catalysis Today,2014,227:80-86.
[35] 阳卫军,郭灿城,毛彦立,等.单金属锰、铁卟啉对空气氧化蒎烯的催化作用及取代基效应[J].高等学校化学学报,2005,26(9):1690-1694.
[36] MCCUE A J,WELLS R P K,ANDERSON J A.Confirmation of chirality in homogeneous and heterogeneous salen-based catalysts [J].Chem Cat Chem,2011,3(4):699-703.
[37] XIONG D L,FU Z H,ZHONG S,et al.Novel homogeneous salen Mn(Ⅲ) catalysts synthesized from dialdehyde or diketone with o-aminophenol for catalyzing epoxidation of alkenes [J].Catalysis Letters,2007,113(3/4):155-159.
[38] TANG Q H,WANG Y,LIANG J,et al.Co2+-Exchanged faujasite zeolites as efficient heterogeneous catalysts for epoxidation of styrene with molecular oxygen chemical [J].Chemical Communications,2004(4):440-441.
[39] NONGWEA I,RAVATA V,MEIJBOOM R,et al.Efficient and reusable Co/nitrogen doped hollow carbon sphere catalysts for the aerobic oxidation of styrene [J].Applied Catalysis,2013,466:1-8.
[40] ZHOU D,TANG B,LU X H,et al.Co2+-exchanged MOR and 5A-zeolites as efficient solid catalysts for the epoxidation of styrene with air [J].Catalysis Communications,2014,45:124-128.
[41] TANG B,LU X H,ZHOU D,et al.Highly efficient epoxidation of styrene and α-pinene with air over Co2+-exchanged ZSM-5 and beta zeolites [J].Catalysis Communications,2012,21:68-71.
[42] TANG B,LU X H,ZHOU D,et al.Co2+-exchanged SAPO-5 and SAPO-34 as efficient heterogeneous catalysts for aerobic epoxidation of alkenes [J].Catalysis Communications,2013,31:42-47.
[43] SPACCINI R,LIGUORI L,PUNTA C,et al.Organocatalyzed epoxidation of alkenes in continuous flow using a multi-jet oscillating disk reactor [J].Chem Sus Chem,2012,5(2):261-265.
[44] CAMERANO J A,SAMANN C,WADEPOHL H,et al.Bis(pyridylimino)isoindolato-iridium complexes as epoxidation catalysts for alkenes [J].Organometallics,2011,30(3):379-382. |