New chiral oligopyridines-4,4'-bis(disaccharide)-functionalised 2,2'-bipyridines and 4'-(disaccharide)-functionalised 2,2':6',2''-terpyridines.
暂无分享,去创建一个
[1] M. Neuburger,et al. Tris-chelate complexes with chiral ligands: In search of diastereoisomeric selectivity with remote stereogenic centres , 2007 .
[2] M. Neuburger,et al. 2,3,5-Tri-O-acetyl-1-(2-chloroethyl)-β-d-ribofuranose , 2006 .
[3] Elisabetta Alberico,et al. Asymmetric transfer hydrogenation: chiral ligands and applications. , 2006, Chemical Society reviews.
[4] Masakatsu Shibasaki,et al. Design and application of linked-BINOL chiral ligands in bifunctional asymmetric catalysis. , 2006, Chemical Society reviews.
[5] M. Benaglia,et al. Synthesis of some oligopyridine–galactose conjugates and their metal complexes: a simple entry to multivalent sugar ligands , 2005 .
[6] Arwin J. Brouwer,et al. High‐Yielding Microwave‐Assisted Synthesis of Triazole‐Linked Glycodendrimers by Copper‐Catalyzed [3+2] Cycloaddition , 2005 .
[7] C. Claver,et al. C1 and C2-symmetric carbohydrate phosphorus ligands in asymmetric catalysis. , 2005, Chemical Society reviews.
[8] C. Leumann,et al. Bipyridyl- and biphenyl-DNA: a recognition motif based on interstrand aromatic stacking. , 2005, Chemistry.
[9] C. Bailly,et al. A route for preparing new neamine derivatives targeting HIV-1 TAR RNA , 2004 .
[10] C. Housecroft,et al. Chiral induction in a ribose-decorated metallostar through intrinsic and interionic diastereomeric interactions. , 2004, Inorganic chemistry.
[11] M. Preobrazhenskaya,et al. Antitumor antibiotic streptonigrin and its derivatives as inhibitors of nitric oxide-dependent activation of soluble guanylyl cyclase. , 2004, European journal of pharmacology.
[12] G. Tolstikov,et al. β-Glycyrrhizic acid drug complexes as new transport forms , 1990, Pharmaceutical Chemistry Journal.
[13] C. Gorman,et al. Synthetic approaches to an isostructural series of redox-active, metal tris(bipyridine) core dendrimers. , 2003, The Journal of organic chemistry.
[14] P. Knight. Predetermination of chirality at octahedral centres with tetradentate ligands: prospects for enantioselective catalysis , 2003 .
[15] M. Spiteller,et al. Occurrence of the fungal toxin orellanine as a diglucoside and investigation of its biosynthesis. , 2003, Angewandte Chemie.
[16] R. Roy,et al. Cu(II)-Self-assembling bipyridyl-glycoclusters and dendrimers bearing the Tn-antigen cancer marker: syntheses and lectin binding properties , 2003 .
[17] B. Kariuki,et al. New approaches to sugar-functionalised 2,2':6', 2 -terpyridines based upon tetrafluorophenoxy spacers; crystal and molecular structures of 4'-(tetrafluoro-4-hydroxyphenyl)-2,2':6', 2 -terpyridine and 4'-(4-methoxytetrafluorophenyl)-2,2':6', 2 -terpyridine , 2003 .
[18] Xinquan Hu,et al. Structural probing of D-fructose derived ligands for asymmetric addition of diethylzinc to aldehydes , 2003 .
[19] G. Besra,et al. Studies on alpha(1-->5) linked octyl arabinofuranosyl disaccharides for mycobacterial arabinosyl transferase activity. , 2001, Bioorganic & medicinal chemistry.
[20] R. Woods,et al. Synthesis and Conformational Analysis of the T‐Antigen Disaccharide (β‐D‐Gal‐(1→3)‐α‐D‐GalNAc‐OMe) , 2001 .
[21] K. Matsuura,et al. Glucosylated Tris-bipyridine Ferrous Complexes: Construction of Hexavalent Saccharide Clusteres via Self-Assembly and Their Recognition by Lectin , 2000 .
[22] E. Constable,et al. Metal-ion control of molecular recognition–sugar-functionalised 2,2′:6′,2″-terpyridines , 1999 .
[23] Tomikazu Sasaki,et al. Iron(II)-Assisted Assembly of Trivalent GalNAc Clusters and Their Interactions with GalNAc-Specific Lectins , 1999 .
[24] R. Auzély-Velty,et al. Synthetic Approaches to Novel Archaeal Tetraether Glycolipid Analogues. , 1999, The Journal of organic chemistry.
[25] J. Pierre. Enantioselective creation of helical chirality in octahedral (OC-6) complexes. Recent advances , 1998 .
[26] N. Bansal,et al. TIN(IV) CHLORIDE MEDIATED GLYCOSYLATION IN ARABINOFURANOSE, GALACTOFURANOSE AND RHAMNOPYRANOSE , 1998 .
[27] I. Hamachi,et al. A boronic acid–diol interaction is useful for chiroselective transcription of the sugar structure to the Δ- versus Λ-[CoIII(bpy)3]3+ ratio , 1998 .
[28] R. Sheldon. Review Chirotechnology: Designing Economic Chiral Syntheses , 1996 .
[29] N. K. Dalley,et al. Highly Stereoselective Synthesis of a C2-Symmetric 2,2′-Bipyridine Derived from Glucose , 1996 .
[30] J. Xie,et al. Building Blocks for Ribozyme Mimics: Conjugates of Terpyridine and Bipyridine with Nucleosides , 1996 .
[31] A. V. Zelewsky. Stereochemistry of coordination compounds , 1996 .
[32] P. Spanu,et al. Stereoselective Approaches to Bioactive Carbohydrates and Alkaloids-With a Focus on Recent Syntheses Drawing from the Chiral Pool , 1995 .
[33] M. Harding,et al. Synthesis and a high field NMR study of a 2,2′-bipyridyl substituted β-cyclodextrin and its luminescent ReI metal complex , 1993 .
[34] E. V. Dehmlow,et al. Synthesen von hydroxylierten Bipyridinen, III. Synthese von unsymmetrischen und symmetrischen Dihydroxybipyridinen , 1992 .
[35] H. Blaser. The Chiral Pool as a Source of Enantioselective Catalysts and Auxiliaries , 1992 .
[36] M. Ward,et al. Synthesis and co-ordination behaviour of 6′,6″-bis(2-pyridyl)-2,2′ : 4,4″ : 2″,2″′-quaterpyridine; ‘back-to-back’ 2,2′ : 6′,2″-terpyridine , 1990 .
[37] M. Isobe,et al. Lampteromyces bioluminescence — 5 chemical synthesis of lampteroflavin as mushroom light emitter , 1990 .
[38] G. Magnusson,et al. 2-Bromoethyl glycosides: synthesis and characterisation , 1983 .
[39] L. Vining,et al. Caerulomycin D, a novel glycosidic derivative of 3,4-dihydroxy-2,2′-dipyridyl 6-aldoxime from Streptomyces caeruleus , 1978 .
[40] F. Case. The Preparation of Certain Trisubstituted 2,6-Bis(2'-pyridyl)pyridines1 , 1962 .
[41] W. M. Corbett,et al. 306. Some new covalent- and ionic-halogen derivatives of cellobiose , 1959 .