简介:采用水热合成方法构建了基于Preyssler型多酸[S5W30O110]的有机-无机杂化材料,其分子式为[HKS5W30O110]·(2,2-Hbpy)8·2H2O(1,bpy=bipyridine).单晶X-射线衍射分析表明化合物1是由S-中心的Preyssler型多酸作为模版,被2,2-联吡啶分子包围形成的核壳结构的有机无机杂化材料.这是第一例基于S-中心Preyssler型多酸的超分子核壳结构.其中质子化的2,2’-联吡啶有机基团通过静电作用与Preyssler型多酸分子构筑成有机无机杂化材料.该化合物属于三斜晶系,空间群为P-1.晶胞参数:a=1.79505(2)nm,b=1.83478(2)nm,c=4.12816(4)nm,α=85.0610(10)°,β=80.6160(10)°,γ=60.7210(10)°,晶胞体积为11.7002(2)nm3.
简介:
简介:神经生长禁止的因素(GIF),metallothionein家庭的一个成员(metallothionein-3,MT3),由它的不同神经生长众所周知禁止的活动,它没被另外的MTisoforms显示出。到现在为止,然而,人们仍然不清楚地知道GIF怎么施加它的生物功能。因为GIF力量用作没有scavenger,这被报导了并且与锌的版本有关,我们的学习被与没有施主的SNOCa类型学习人的GIF和人的MT1g的反应集中于GIF和号码的相互作用,GIF是比向SNOC的MT-1g更反应的,这被发现。为了进一步弄明白,如果在这反应的GIF的高反应源于酸硷的催化作用,几异种被构造:E23K,E41G/E43A,E23K/E41G/E43A。由向SNOC学习他们的基本性质和反应,GIF的S-nitrosylation与酸硷的催化作用有关,这被发现不仅,而且到metal-thiolate簇的可接近性。
简介:AhighlyefficienttotalsynthesisofS-(+)-tylophorinehasbeenaccomplishedinfullyasymmetricfashion.
简介:INthepreviouspapersoftheauthor’s,theelementaryreactionoperatorconcerningpointgroupwasdiscussed.Inthispaper,morecomplexreactionoperatorswillbeanalysed.Byusingtheskillinreactionoperator,theelectrocyclicandcy-cloadditionreactionsareillustrated.
简介:Baker'syeastmediatedreductionofopticallyactivediketoneisdescribed.Thetwoketogroupsareefficientlydifferentiatedandtheeevalueoftherecoveredmaterialisconsiderablyraised.Itaffordshighlyopticallyactivekeyintermediatesefficientlyforthesynthesisofnaturalpolyhydroxylatedagarofuranproducts.
简介:Achiralrutheniumcomplex[(1S,2S)-DPEN]-RuCl_2(PPh_3)_2(DPEN=1,2-diphenylethylenediamine,PPh_3=triphenylphosphine)wasencapsulatedinthechannelofAl-MCM-41byelectrostaticadsorptionand1,1-dichlorosilacyclobutanemodification.Thepreparedheterogeneouscatalystshowedthesamecatalyticactivityandenantioselectivityasthecorrespondinghomogeneouscatalystintheasymmetrichydrogenationofacetophenone,andcouldbereusedatleastseventimeswithoutsignificantlossofcatalyticactivityandenantioselectivity.
简介:采用密度泛函理论的B3LYP方法、从头算的MP2方法和自洽反应场极化连续模型(PCM),在6-311++G(2d,2p)基组水平上研究了N,N’-二甲基-S-异苯并呋喃在气相和溶液中发生S→N烷基重排反应的机理、溶剂效应和取代基效应.结果表明:该反应通过四元环机理和双位迁移机理生成产物,在气相和溶剂水中,双位迁移途径的能垒均比四元环途径低,反应主要通过双位迁移途径生成产物.在气相,苯环上发生-Cl,-NO2和-OCH3取代时,双位迁移途径的能垒在MP2/6-311++G(2d,2p)水平上比没有取代时分别低4.18,7.61,4.96kJ/mol,反应的取代基效应不明显.而在溶剂水中,苯环上发生-Cl,-NO2和-OCH3取代时,双位迁移途径的能垒在PCM-MP2/6-311++G(2d,2p)水平上比气相时分别低37.73,39.96和37.17kJ/mol,反应的溶剂化效应非常明显.理论研究结果与实验观察结果一致.
简介:Bothenantiomersoffluoxetineweresynthesizedinfivestepsfromethylbenzoylacetate(1)usingmicrobial-chemicalapproachwithoverallyieldsof59%and62%respectively.(S)-Enan-tiomercanbeobtainedin>99%e.e.byrestingcellofbaker’syeastandtheRformwasproducedin81%e.e.byimmobilizedGeotrichumsp.G38.
简介:IntroductionInthepastseveralyears,muchresearchworkhasbeendoneforthesynthesisofC-fusedbicyclo-β-lactamcompoundsandaconcise“DoubleAnnulation”procedurehasbeendeveloped.Theβ-lactamringisformedbytheclassicalStaudingerreaction[1—3]betweenα-(alkylthio)acylchlorideandanequivalentα,β-unsaturatedimine.Thesulfurringissubsequentlyfusedontotheβ-lactamunitbymeansofahalogen-promotedheterocyclizationprocess[4—6].ThisprocedurewasappliedtothesynthesisofpenemasillustratedinFig.1.TheobtainedX-penemsareakindofimportantintermediatesforsynthesizingaseriesofβ-lactamcompounds,forexample,theyarecarboxylatedbycouplingreactionsontheCatomwhichislinkedtohalagen,formingpenem[7].Animportantpurposeintheresearchfieldistoprobeintonewβ-lactammedicines.
简介:Bothenantiomersofdenopamineweresynthesizedusingmicrobial-chemicalapproachviabioreductionof1-(acetoxyphenyl)ketone4(R=CH2C1)and5(R=CO2Et)withfungusGeotrichumsp.G38.
简介:SYNTHESIS AND COMPLEXATION PROPERTIES OF NEW DIOXO TETRAAMINE LIGANDS WITH 8-METHYL QUINOLINE AS FUNCTIONAL PENDANT(S)SYNTHES...
简介:AnewtypeofdendriticNOBINderivedSchiffbaseligandshasbeensynthesizedandappliedtotitaniumcatalyzedhetero-Diels-AlderreactionofDanigheifsky'sdieneandaldehydes,affordingthecorresponding2-substituted2,3-dihydro-4H-pyran-4-oneingoodyieldsandmoderateenantioselectivities(upto59.2%ee).Itwasfoundthatthesizeofdendronattachedtothetridentatedligandshasslightimpactontheenantioselectivttyofthereactionandthesecondgenerationofdendriticligandexhibitedthebestenantioselectivity.