Synthesis and characterization of mono- and bis-methano[60]fullerenyl amino acid derivatives and their reductive ring-opening retro-Bingel reactions

被引:49
作者
Burley, GA
Keller, PA
Pyne, SG
Ball, GE
机构
[1] Univ Wollongong, Dept Chem, Wollongong, NSW 2522, Australia
[2] Univ New S Wales, NMR Spect Unit, Sydney, NSW 2052, Australia
关键词
D O I
10.1021/jo025928j
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The addition of N-(diphenylmethylene)glycinate esters (Ph2C=NCH2CO2R) 3-6 to [60]fullerene under Bingel conditions gives, respectively, the methano[60]fullerenyl iminoesters 7-10. Upon treatment of 7-9 with sodium cyanoborohydride, in the presence of a protic or a Lewis acid, a novel reductive ring-opening reaction occurred to give the corresponding 1,2-dihydro[60]fullerenyl glycine derivatives 11-13. Using tethered bis-N-(diphenylmethylene)glycinate esters 33 and 34 derived from m- and p-benzenedimethanol scaffolds, the corresponding bis-methano[60]fullerenyl iminoesters 35-38 were synthesized under double Bingel reaction conditions. The m-benzenedimethanol derivative 33 gave the trans-4 (35) and cis-3 (36) regioisomeric bisadducts in a ratio of 80:20. The analogous para-tethered derivative 34 afforded the trans-3 (37) and trans-4 (38) regioisomers in a 80:20 ratio. The regiochemistry of the major bisadducts 35 and 37 (via the transesterified 39) were unequivocally determined using 2D INADEQUATE and C-C TOCSY NMR experiments. The regiochemistry of these bis-additions were unexpected on the basis of literature precedents. These results unequivocally show that the regiochemistry of tethered his-additions is not solely dependent on the nature of the tether. A mixture of the trans-4 and cis-3 nonsymmetrical bisadducts 45 and 46 was obtained from the double-Bingel cyclopropanation of a bis-N-(diphenylmethylene)glycinate tether based on a 1,3-naphthyldimethanol scaffold. The regiochemistry of these compounds (45 and 46) was identified by correlation with the diethyl esters 40 and 47, prepared by trans-esterification of 35/45 and 36/46, respectively. The INADEQUATE and molecular modeling experiments allowed topological mapping of the fullerene surfaces of the bis-methano [60]fullerenes 38 and 42. Reductive ring-opening reactions on the tethered bis-methano[60]fullerenes 35-37, 45, and 46 gave none of the expected bis-fullerenylglycinates rather the reductive ring-opening-retro-Bingel products, the 1,2-dihydro[60]fullerenylglycinates 48, 49, 52, and 53. These compounds resulted from the reductive ring-opening of one methanoimino ester moiety and a retro-Bingel reaction of the other. Under analogous reductive ring-opening-retro-Bingel conditions, the non-tethered bis-methano[60]fullerene 40 afforded the 1,2-dihydro[60]fullerenylglycinate 12. Thus, it was concluded that the tether was not the driving force for the reductive elimination of one of the methano groups.
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页码:8316 / 8330
页数:15
相关论文
共 60 条
[21]   Regiochemistry of twofold additions to [6,6] bonds in C-60: Influence of the addend-independent cage distortion in 1,2-monoadducts [J].
Djojo, F ;
Herzog, A ;
Lamparth, I ;
Hampel, F ;
Hirsch, A .
CHEMISTRY-A EUROPEAN JOURNAL, 1996, 2 (12) :1537-1547
[22]   Carbon allotropes of dumbbell structure:: C121 and C122 [J].
Dragoe, N ;
Tanibayashi, S ;
Nakahara, K ;
Nakao, S ;
Shimotani, H ;
Xiao, L ;
Kitazawa, K ;
Achiba, Y ;
Kikuchi, K ;
Nojima, K .
CHEMICAL COMMUNICATIONS, 1999, (01) :85-86
[23]   Electronic interactions in a new fullerene dimer:: C122H4, with two methylene bridges [J].
Dragoe, N ;
Shimotani, H ;
Hayashi, M ;
Saigo, K ;
de Bettencourt-Dias, A ;
Balch, AL ;
Miyake, Y ;
Achiba, Y ;
Kitazawa, K .
JOURNAL OF ORGANIC CHEMISTRY, 2000, 65 (11) :3269-3273
[24]  
Echegoyen L., 2000, FULLERENES CHEM PHYS, P1
[25]   Electrochemical studies of seven regioisomers of tris[di(ethoxycarbonyl)methano][60]fullerene: Umpolung of regiochemistry in retro-bingel reactions and walk-on-the-sphere rearrangements [J].
Echegoyen, LE ;
Djojo, FD ;
Hirsch, A ;
Echegoyen, L .
JOURNAL OF ORGANIC CHEMISTRY, 2000, 65 (16) :4994-5000
[26]   SYNTHESIS, CHEMISTRY, AND PROPERTIES OF A MONOALKYLATED BUCKMINSTERFULLERENE DERIVATIVE, T-BUC-60 ANION [J].
FAGAN, PJ ;
KRUSIC, PJ ;
EVANS, DH ;
LERKE, SA ;
JOHNSTON, E .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (24) :9697-9699
[27]   Preparation of [60]fullerene tris-malonate adducts by addend removal from higher adducts via the electrochemical retro-Bingel reaction [J].
Fender, NS ;
Nuber, B ;
Schuster, DI ;
Wilson, SR ;
Echegoyen, L .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2, 2000, (09) :1924-1928
[28]   INHIBITION OF THE HIV-1 PROTEASE BY FULLERENE DERIVATIVES - MODEL-BUILDING STUDIES AND EXPERIMENTAL-VERIFICATION [J].
FRIEDMAN, SH ;
DECAMP, DL ;
SIJBESMA, RP ;
SRDANOV, G ;
WUDL, F ;
KENYON, GL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (15) :6506-6509
[29]   Synthesis of pyrrolidine ring-fused fullerene multicarboxylates by photoreaction [J].
Gan, LB ;
Jiang, JF ;
Zhang, W ;
Su, Y ;
Shi, Y ;
Huang, CH ;
Pan, JQ ;
Lü, MJ ;
Wu, Y .
JOURNAL OF ORGANIC CHEMISTRY, 1998, 63 (13) :4240-4247
[30]   REGIOCHEMISTRY OF THE BISOSMYLATION OF C-60 - ORTHO, META, AND PARA IN 3-DIMENSIONS [J].
HAWKINS, JM ;
MEYER, A ;
LEWIS, TA ;
BUNZ, U ;
NUNLIST, R ;
BALL, GE ;
EBBESEN, TW ;
TANIGAKI, K .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (20) :7954-7955