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Proje Grubu: TBAG Sayfa Sayısı: 38 Proje No: 110T073 Proje Bitiş Tarihi: 01.10.2012 Metin Dili: Türkçe İndeks Tarihi: 29-07-2022

Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi

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Anahtar Kelime:

Erişim Türü: Erişime Açık
  • ALMANSA R., Guijarro D., Yus M. Enantioselective Addition of Dialkylzinc Reagents to N(Diphenylphosphinoyl)Imines Catalyzed by Β-Aminoalcohols with the Prolinol Skeleton. Tetrahedron: Asymmetry, 18, 2828-40, (2007).
  • BOEV V. I., Ferrocenylhydroxymethyl-phosphonates, Zhurnal Obshchei Khimii, 47, 2527, (1977).
  • CAMBRIDGE Crystallographic Data Centre, www.ccdc.cam.ac.uk
  • CHEN J., Lu H., Li X., Cheng L., Wan J., Xiao W., Readily Tunable and Bifunctional lProlinamide Derivatives:  Design and Application in the Direct Enantioselective Aldol Reactions, Org. Lett., 7, 4543-45, (2005).
  • CHEN W., Hui Y., Zhou X., Jiang J., Cai Y., Liu X., Lin L., Feng X., Chiral N,N′-dioxide-Yb(III) complexes catalyzed enantioselective hydrophosphonylation of aldehydes, Tetrahedron Lett., 51, 4175-78, (2010).
  • DENMARK S. E., Fu J., Coe D. M., Su X., Pratt N. E., Griedel B. D., Chiral PhosphoramideCatalyzed Enantioselective Addition of Allylic Trichlorosilanes to Aldehydes. Preparative and Mechanistic Studies with Monodentate Phosphorus-Based Amides, J. Org. Chem., 71, 1513-22, (2006).
  • DENMARK S., Stephen B. D., Su X., Wong K. Chemistry of Trichlorosilyl Enolates. 1. New Reagents for Catalytic, Asymmetric Aldol Additions, J. Am. Chem. Soc., 118, 7404-05, (1996)
  • DE SIO V., Massa A., Scettri A. Chiral Sulfoxides as Activators of Allyl Trichlorosilanes in the Stereoselective Allylation of Aldehydes, Org. Biomol. Chem., 8, 3055-59, (2010).
  • DESROSIERS J. –N., Cote A., Boezio A. A., Charette A. B. Preparation of Enantiomerically Enrıihed (1S)-1-Phenylpropan-1-Amine Hydrochloride by a Catalytic Addition of Diorganozinc Reagents To Imines, Organic Synthesis, 83, 5-11, (2006).
  • DOĞAN Ö., Koyuncu H., Garner P., Bulut A., Youngs W. J., Panzner M., New Zinc(II)-Based Catalyst for Asymmetric Azomethine Ylide Cycloaddition Reactions, Org. Lett., 8, 468790, (2006).
  • DOĞAN Ö., Babiz H., Gözen A. G., Synthesis of 2-aziridinyl phosphonates by modified Gabriel–Cromwell reaction and their antibacterial activities, Eur. J. of Med. Chem., 46, 2485-89, (2011).
  • DONG X-Q., Teng H-L., Wang C-J., Highly Enantioselective Direct Michael Addition of Nitroalkanes to Nitroalkenes Catalyzed by Amine−Thiourea Bearing Mulhple HydrogenBonding Donors, Org. Lett., 11, 1265-68, (2009).
  • ERÖKSÜZ S., Dogan O., Garner P. P., A new chiral phosphine oxide ligand for enantioselective 1,3-dipolar cycloaddition reactions of azomethine ylides, Tetrahedron: Asymmetry, 21,2535-41, (2010).
  • GLEDHILL A. C., Cosgrove N. E., Nixon T. D., Kilner C. A., Fisher J., Kee T. P., Asymmetric general base catalysis of the phospho-aldol reaction via dimeric aluminium hydroxides, Dalton Trans., 39, 9472-75, (2010).
  • GUILLENA G., Hita Mdel C., Nájera C., Viózquez SF., A Highly Efficient Solvent-Free Asymmetric Direct Aldol Reaction Organocatalyzed by Recoverable (S)-Binam-l-Prolinamides. ESI-MS Evidence of the Enamine−Iminium Formahon, J Org Chem., 15, 5933-43, (2008).
  • JAIN P., Antilla J. C., Chiral Brønsted Acid-Catalyzed Allylboration of Aldehydes, J. Am. Chem. Soc., 132, 11884-6, (2010).
  • KOTANI S., Shimoda Y., Sugiura M., Nakajima M., Novel Enantioselective Direct Aldol-Type Reaction Promoted by a Chiral Phosphine Oxide as an Organocatalyst, Tetrahedron Lett., 50, 4602-05, (2009).
  • LU S-F., Du D-M., Xu J., Zhang S-W., Asymmetric Michael Addition of Nitroalkanes to Nitroalkenes Catalyzed by C2-Symmetric Tridentate Bis(oxazoline) and Bis(thiazoline) Zinc Complexes, J. Am. Chem. Soc., 128, 7418-19, (2006).
  • MALKOV A.V., Bell M., Orsini M., Pernazza D., Massa A., Herrmann P., Meghani P., Kocovski P. New Lewis-Basic N-Oxides as Chiral Organocatalysts in Asymmetric Allylation of Aldehydes, J. Org. Chem., 68, 9659-68, (2003).
  • NAKAJIMA M., Kotani S., Ishizuka T., Hashimoto S., Chiral phosphine oxide BINAPO as a catalyst for enantioselective allylation of aldehydes with allyltrichlorosilanes, Tetrahedron Letters, 46, 157-9, (2005).
  • NAKANISHI K., Kotani S., Sugiura M., Nakajima M., First asymmetric Abramov-type phosphonylation of aldehydes with trialkyl phosphites catalyzed by chiral Lewis bases, Tetrahedron, 64, 6415-19 (2008).
  • OHMARU Y., Sato N., Mizutani M., Kotani S., Sugiura M., Nakajima M., Synthesis of aryl group-modified DIOP dioxides (Ar-DIOPOs) and their application as modular Lewis base catalysts, Org. Biomol. Chem., 10, 4562-70, (2012).
  • PANDI Muthupandi P., Sekar G., Synthesis of an unusual dinuclear chiral iron complex and its application in asymmetric hydrophosphorylation of aldehydes, Org. Biomol. Chem., 10, 5347-52, (2012).
  • RABALAKOS C., Wulff W. D., Enantioselective Organocatalytic Direct Michael Addition of Nitroalkanes to Nitroalkenes Promoted by a Unique Bifunctional DMAP-Thiourea, J. Am. Chem. Soc., 130, 13524-25, (2008).
  • ROSSI S., Benaglia M., Genoni A., Benincori T., Celentano G., Biheteroaromatic Diphosphine Oxides-Catalyzed Stereoselective Direct Aldol Reactions, Tetrahedron, 67, 158-166, (2011).
  • SIMONINI V., Benaglia M., Benincorib T., Novel Chiral Biheteroaromatic Diphosphine Oxides for Lewis Base Activation of Lewis Acids in Enantioselective Allylation and Epoxide Opening, Adv. Synth. Catal., 350, 561-4, (2008).
  • SOETA T., Nagai K., Fujihara H., Kuriyama M., Tomioka K., Asymmetric Alkylation of N-Toluenesulfonylimines with Dialkylzinc Reagents Catalyzed by Copper−Chiral Amidophosphine, J. Org. Chem., 68, 9723-27, (2003).
  • SUYAMA K., Sakai Y., Matsumoto K., Saito B., Katsuki T., Highly Enantioselective Hydrophosphonylation of Aldehydes: Base-Enhanced Aluminum–salalen Catalysis,Angew. Chem., Int. Ed., 49, 797-9, (2010).
  • WANG J. Li H., Zu L., Jiang W., Wang W., Organocatalytic, Enantioselective Conjugate Additions of Nitroalkanes to Nitroolefins, Adv. Synth. Catal., 348, 2047-50, (2006).
  • WANG M. C., Xu C. L., Cheng F., Ding X., Chiral Ferrocenyl Amidophosphine Ligand for Highly Enantioselective Addition of Diethylzinc to N-Diphenylphosphinoylimines, Tetrahedron,62, 12220-26, (2006).
  • WANG P., Chen J., Cun L., Deng J., Zhu J., Liao J. Aryl tert-Butyl Sulfoxide-Promoted Highly Enantioselective Addition of Allyltrichlorosilane to Aldehydes,Org. Biomol. Chem., 7, 3741-47, (2009).
  • WU Q., Zhou J., Yao Z., Xu F., Shen Q., Lanthanide Amides [(Me3Si)2N]3Ln(μ-Cl)Li(THF)3 Catalyzed Hydrophosphonylation of Aryl Aldehydes, J. Org. Chem., 75, 7498-01, (2010).
  • YANG X., Zhou X., Lin L., Chang L., Liu X., Feng X., Highly Enantioselective Direct Michael Addition of Nitroalkanes to Nitroolefins Catalyzed by La(OTf)3/N,N′-Dioxide Complexes, Angew. Chem. Int. Ed., 47, 7079-81, (2008).
  • YIN Y.Y., Zhao G., Qian Z.S., Yin W. X., 6,6′-Bisperfluoroalkylated BINOLs Promoted Asymmetric Allylation of Aldehydes, J. Flourine Chem., 120, 117-20, (2003).
  • ZAITSEW K. V., Bermeshev M. V., Samsonov A. A., Oprunenko J. F., Churakov A. V, Howard J. A. L., Karlov S. S., Zaitseva G. S.Titanium Complexes Based on Chiral Enantiopure Dialkanolamines: Synthesis, Structures And Catalytic Activity, New J. Chem., 32, 1415-31, (2008).
  • ZHANG X.-M., Zhang H.-L., Lin W.-Q., Gong L.-Z., Mi A. –Q., Cui X., Jiang Y. –Z., Yu K. –B. Evaluation of Chiral Oxazolines for the Highly Enantioselective Diethylzinc Addition to N-(Diphenylphosphinoyl) Imines, J. Org. Chem.,68, 4322-29, (2003).
  • ZHENG B., Liu Q., Guo C., Wang X., He L., Highly Enantioselective Direct Aldol Reaction Catalyzed by Cinchona Derived Primary Amines, Org. Biomol. Chem., 5, 2913-15, (2007).
APA Dogan O, BULUT A, İŞÇİ M, TECİMER M, AKSAKAL D, ÇAĞLI E (2012). Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. , 1 - 38.
Chicago Dogan Ozdemir,BULUT Adnan,İŞÇİ Muhammet,TECİMER Muhammet Ali,AKSAKAL Duygu,ÇAĞLI Eda Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. (2012): 1 - 38.
MLA Dogan Ozdemir,BULUT Adnan,İŞÇİ Muhammet,TECİMER Muhammet Ali,AKSAKAL Duygu,ÇAĞLI Eda Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. , 2012, ss.1 - 38.
AMA Dogan O,BULUT A,İŞÇİ M,TECİMER M,AKSAKAL D,ÇAĞLI E Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. . 2012; 1 - 38.
Vancouver Dogan O,BULUT A,İŞÇİ M,TECİMER M,AKSAKAL D,ÇAĞLI E Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. . 2012; 1 - 38.
IEEE Dogan O,BULUT A,İŞÇİ M,TECİMER M,AKSAKAL D,ÇAĞLI E "Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi." , ss.1 - 38, 2012.
ISNAD Dogan, Ozdemir vd. "Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi". (2012), 1-38.
APA Dogan O, BULUT A, İŞÇİ M, TECİMER M, AKSAKAL D, ÇAĞLI E (2012). Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. , 1 - 38.
Chicago Dogan Ozdemir,BULUT Adnan,İŞÇİ Muhammet,TECİMER Muhammet Ali,AKSAKAL Duygu,ÇAĞLI Eda Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. (2012): 1 - 38.
MLA Dogan Ozdemir,BULUT Adnan,İŞÇİ Muhammet,TECİMER Muhammet Ali,AKSAKAL Duygu,ÇAĞLI Eda Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. , 2012, ss.1 - 38.
AMA Dogan O,BULUT A,İŞÇİ M,TECİMER M,AKSAKAL D,ÇAĞLI E Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. . 2012; 1 - 38.
Vancouver Dogan O,BULUT A,İŞÇİ M,TECİMER M,AKSAKAL D,ÇAĞLI E Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi. . 2012; 1 - 38.
IEEE Dogan O,BULUT A,İŞÇİ M,TECİMER M,AKSAKAL D,ÇAĞLI E "Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi." , ss.1 - 38, 2012.
ISNAD Dogan, Ozdemir vd. "Fam ve pfam kiral ligandları ile organik bileşiklerin katalitik enantioseçici sentezi". (2012), 1-38.