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1.
LI Ji-Sheng DONG Guo-Xiao FENG Jun JI Gai-JiaoInstitute of Chemistry Chinese Academy of Sciences Beijing China 《中国化学》1995,13(6):525-531
Fullerene C60 reacted with p-azidostyrene derivatives in refluxing chlorobenzene,yielding monoadducts 2a and 2d as well as diadduct 2c with aziridine structure at 6/6-ring junctions.Experimental results showed that the addition of the second azide to the monoadduct was regioselective.The diadduct,of Cs symmetry in C60 moiety,was unstable by opening to be 1,6-imido[10]annulene structure. 相似文献
2.
Hai YANG Qian LI Jian Xiong BAO Wei LU* Haji Aker AISA Jun Chao CAI Shanghai Institute of Materia Medica SIBS Chinese Academy of Sciences Shanghai Xinjiang Institute of Chemistry Chinese Academy of Sciences Urumqi 《中国化学快报》2002,13(6)
The naturally occurring enantiomers mixture of shikonin (R-1) and alkannin (S-1) has been named shikalkin by H.Brockmann1. Shikonin was first isolated as its acetate from the roots of Lithospermum erythrorhizon (LE) which has been used for dyeing in China, Japan, and Korea from ancient times2. Alkannin was found in Alkanna tincloria(AT) and many other type of Boraginaceous roots1. Shikalkin 1 and their ester derivatives showed antitumor3, antiinflammatory4, antibacerical5, immunostimu… 相似文献
3.
The synthesis of 4-aryl-1,2,3,4-tetrahydroisoquinolines is achieved via the ether rearrangement methodology. Subsequent reactions yielded cherylline and ether derivatives of amaryllidaceac alkaloids. 相似文献
4.
N. Yu. Kuznetsov S. E. Lyubimov I. A. Godovikov Yu. N. Bubnov 《Russian Chemical Bulletin》2014,63(2):529-537
A new strategy for assembly a tricyclic skeleton of ladybirds azaphenalene alkaloids (coccinellides) was developed based on the combination of allylboration reaction and intramolecular metathesis. The first key step is the 1,2-organolithiation of 4-picoline with (4,4-dieth-oxybutyl)lithium with subsequent reductive allylation with triallylborane leading to trans-2-allyl-6-(4,4-diethoxybutyl)-4-methyl-1,2,3,6-tetrahydropyridine. The 4,4-diethoxybutyl substituent was further converted to 4-acetoxy-5-hexenyl in four steps, then, the product obtained was involved in the second key step, the intramolecular allylic amination upon treatment with a [Pd] or an [Ir] catalyst giving diastereomeric bicyclic terminal dienes (~1: 1), which were separated by chromatography. The stereochemistry of one of the dienes is the same as that in alkaloid Hippocasine. The third key step (the intramolecular metathesis reaction) includes the final assembly of the azaphenalene system. The tricyclic derivative obtained contains two differently substituted C=C bonds, selective hydrogenation of one of which (Pd/C) leads to (±)-Hippocasine, whereas exhaustive hydrogenation gives (±)-epi-Hippodamine. 相似文献
5.
《Tetrahedron: Asymmetry》1999,10(10):1969-1977
Pseudomonas cepacia lipase (PSL) efficiently catalyses the kinetic resolution of (±)-cis- and (±)-trans-1-aminoindan-2-ol through the O-acylation reaction of the corresponding N-benzyloxycarbonyl derivative using vinyl acetate as the acyl donor. In a similar way, cis-N-Cbz-2-aminoindan-1-ol is resolved when isopropenyl acetate is used as the acylating agent. The enantioselectivity of the reaction was lower for (±)-trans-N-Cbz-2-aminoindan-1-ol due to the different steric requirements for the two conformers of this substrate. 相似文献
6.
A convergent and efficient formal synthesis of (±)-atisine has been accomplished. The synthetic strategy is to efficiently construct the bicyclo[2.2.2]octane ring moiety by an oxidative dearomatization/intramolecular Diels-Alder cycloaddition cascade. The first total synthesis of another atisine-type C(20)-diterpenoid alkaloid, (±)-isoazitine, has also been achieved employing the same strategy. 相似文献
7.
《Journal of Coordination Chemistry》2012,65(14):1583-1590
Thorium(IV) tetrakis(dithiophosphates), [Th{S2P(OR)2}4] (where R?=?–CH2CH2CH3 or –C6H5) and [Th{S2PO2G}4] [where G?=?–C(CH3)2CH2CH(CH3)–, –CH2C(CH3)2CH2–, –C(CH3)2C(CH3)2– and –CH2CH2CH(CH3)–] were prepared in methanolic solution of Th(NO3)4???6H2O and ammonium dithiophosphates. Adducts of the type [Th{S2P(OR)2}4???nL] and [Th{S2PO2G}4???nL] [where n?=?1, L?=?N2C10H8 or N2C12H8 and n?=?2, L?=?P(C6H5)3] were prepared by the reaction of thorium(IV) tetrakis(dithiophosphates) and nitrogen or phosphorus donors in benzene. These newly synthesised derivatives have been characterized by elemental analyses, molecular weights, IR, 1H and 31P NMR spectral measurements. Coordination numbers of eight and ten are suggested for thorium(IV) in these derivatives. 相似文献
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9.
《Tetrahedron》1986,42(15):4297-4308
10.
A total synthesis of (±)-boschnialactone ( 1 ) and (±)-tertahydroanhydrodesoxyaucubigenin ( 2 ) is described and trisubstitued cyclopentenoid 3 is a key intermediate. 相似文献
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12.
Chen ZH Zhang YQ Chen ZM Tu YQ Zhang FM 《Chemical communications (Cambridge, England)》2011,47(6):1836-1838
The first total synthesis of polycyclic Stemona alkaloid maistemonine has been achieved. The efficient approach features a stereoselective intramolecular Schmidt reaction, a ketone-ester condensation, and a Reformatsky reaction. Additionally, another Stemona alkaloid stemonamide was divergently synthesized from a common intermediate. 相似文献
13.
Małgorzata Lisowska-Kuźmicz Małgorzata Kantor-Boruta Anna Jończyk Małgorzata Jarończyk Agnieszka Ocios-Bębenek Aleksander P. Mazurek Zdzisław Chilmonczyk Maciej Jarosz 《Analytical and bioanalytical chemistry》2014,406(15):3697-3702
A new chromatographic method for the enantioseparation and the determination of (?)-trans-paroxetine and (+)-trans-paroxetine has been developed with the aid of amylose ovomucoid-based chiral stationary phase. The method is faster and five times more sensitive than procedures recommended previously: limit of detection and limit of quantification are 5 and 16 ng/mL, respectively [modified (Ferretti et al. in J Chromatogr B 710:157–164, 1998): 20 and 60 ng/mL]. It was carefully validated and applied for the determination of (?)-trans-paroxetine and (+)-trans-paroxetine in Parogen (Mc Dermott Laboratories Ltd.) and Xetanor (Actavis) coated tablets. Figure
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15.
《中国化学快报》1997,(11)
Eversinceβ-vetivoneanditscongenerswererecognizedtohavespiro[4,5]decaneratherthanthehydroazuleneskeleton,[1]themembersofthisclasshavebecomeafavoritetargetforsynthesis.Herein.weshowafacileconversionofthemajorphotoproductformedinthereactionofmethyl2,4-dioxopentancate(1)with1,5-dimethyl-6-methylenecyclochexene(2)[2]intovetispiranederivatives,hinesol(3),ametaboliteofAtractylodeslancea[3,4],andagarospirol(4)foundinAquilariaagollocha,[5]inracemicforms,respectively.WhenanEtoAsolutionof1and2wasintema… 相似文献
16.
A full account of the total synthesis of (±)-maistemonine, (±)-stemonamide, and (±)-isomaistemonine is presented. Two approaches have been developed to construct the basic pyrrolo[1,2-a]azepine core of the Stemona alkaloids, featuring a tandem semipinacol/Schmidt rearrangement of a secondary azide and a highly stereoselectively desymmetrizing intramolecular Schmidt reaction, respectively. To build the common spiro-γ-butyrolactone, a new protocol was carried out by utilizing an intramolecular ketone-ester condensation as the key transformation. The vicinal butyrolactone moiety of (±)-maistemonine was stereoselectively introduced via a one-pot procedure involving the epimerization at C-3 and carbonyl allylation/lactonization. Moreover, (±)-stemonamide was divergently synthesized from a common intermediate, and (±)-isomaistemonine was obtained via the epimerization of (±)-maistemonine at C-12. 相似文献
17.
Total syntheses of (±)-securinine and (±)-allosecurinine that employ a tandem rhodium carbenoid-initiated Claisen/α-ketol rearrangement sequence as a key step are described. 相似文献
18.
《Tetrahedron》1987,43(5):825-834
The first total synthesis of the two biooxidation products of patchouli alcohol (2), (±)-hydroxy patchouli alcohol (3) and the corresponding (±)-carboxylic acid 4, has been achieved in highly stereoconcrolled manners. Synthesis of (±)-norpatchoulenol (1), the real odoriferous substance of patchouli oil, has been accomplished by the biogenetic route via (±)-3 and (±)-4. 相似文献
19.
The syntheses of (±)-curcuphenol 1, (±)-curcudiol 2, (±)-curcuhydroquinone 3, and (±)-curcuquinone 4 have been achieved. The key steps involved in the syntheses were the Reformatsky reaction and hydrogenation reaction. 相似文献