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1.
30.90,31.00,32.53,32.60,33.39,39.14,50.15,51.60,58.25,64.94,66.14,68.54,70.69,71.29,115.08,118.03,123.69,124.15,128.64,130.60,132.23,134.60,143.91,146.32,151.73,158.03,170.71,221.14

2.
14.31,23.29,27.76,32.60,36.12,130.55

3.
48.56,109.32,112.70,136.22,148.41,159.41
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1 .     compound 2
B10C12H24     ÏàËÆ¶È:83.3%
Tetrahedron Letters          2000          41          2499-2501
Is the halogen¨Cmetal exchange faster than deprotonation in the reaction of ortho-carboranyl aryl bromide with butyllithium?
Mouad Lamrani, Ryo Hamasaki, Yoshinori Yamamoto
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
2 .     Z-9-nonacosene
C29H58     ÏàËÆ¶È:71.4%
Phytochemistry          1990          29          1625-1628
Constituents of the latex of Euphorbia antiquorum  
Mohan B. Gewali,Masao Hattori,Yasuhiro Tezuka,Tohru Kikuchi,Tsuneo Namba
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
3 .     compound 1a
C14H34N2Si     ÏàËÆ¶È:71.4%
Zeitschrift f¨¹r Naturforschung B          2011          66          917-922
CO2 as an Oxygen Source for Polysiloxanes - Preparation, Crystal Structure and Thermal Decomposition of Two Novel Silylcarbamates
C. Wiltzsch, K. Kraushaar, A. Schwarzer, and E. Kroke
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
4 .     compound 2d
C13H24N2O4F6     ÏàËÆ¶È:71.4%
Heterocycles          2000          53          1317-1328
Solution Parallel Synthesis of Cyclic Guanidines
Christelle Marmillon, Jacques Bompart, Mich¨¨le Calas, Roger Escale,* and Pierre-Antoine Bonnet
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
5 .     (Z)-2-heptene
    ÏàËÆ¶È:71.4%
Organic Magnetic Resonance          1973          5          147-153
Configurations and conformations in acyclic, unsaturated hydrocarbons. A 13C NMR study
J. W. de Haan and L. J. M. Van de Ven
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
6 .     cis-hept-2-ene
    ÏàËÆ¶È:71.4%
Organic Magnetic Resonance          1976          8          426-431
13C chemical shifts of some model olefins
P. A. Couperus, A. D. H. Clague and J. P. C. M. van Dongen
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
7 .     Compound 9
C5H15O6P2N     ÏàËÆ¶È:66.6%
Bioorganic & Medicinal Chemistry Letters          2005          15          4685-4690
Synthesis and biological evaluation of 1-amino-1,1-bisphosphonates derived from fatty acids against Trypanosoma cruzi targeting farnesyl pyrophosphate synthase
Sergio H. Szajnman, Esteban L. Ravaschino, Roberto Docampo, Juan B. Rodriguez
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
8 .     Compound 10
C6H17O6P2N     ÏàËÆ¶È:66.6%
Bioorganic & Medicinal Chemistry Letters          2005          15          4685-4690
Synthesis and biological evaluation of 1-amino-1,1-bisphosphonates derived from fatty acids against Trypanosoma cruzi targeting farnesyl pyrophosphate synthase
Sergio H. Szajnman, Esteban L. Ravaschino, Roberto Docampo, Juan B. Rodriguez
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
9 .     Hexyn-1-yl silver
    ÏàËÆ¶È:66.6%
Magnetic Resonance in Chmesitry          2004          42          831-834
Triphenylphosphane complex formation with hexyn-1-yl silver
Ulla L¨¦tinois-Halbes, Patrick Pale and Stefan Berger
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
10 .     compound 4a
    ÏàËÆ¶È:66.6%
Zeitschrift f¨¹r Naturforschung B          2011          66          917-922
CO2 as an Oxygen Source for Polysiloxanes - Preparation, Crystal Structure and Thermal Decomposition of Two Novel Silylcarbamates
C. Wiltzsch, K. Kraushaar, A. Schwarzer, and E. Kroke
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
11 .     1,4-dideutero-2,3-di(pentyl)buta-1,3-diene
C14H26D2     ÏàËÆ¶È:66.6%
Russian Journal of Organic Chemistry          2005          41          667-672
Cycloaluminizing of Acetylenes and 1,4-Enynes in the Presence of Zr-containing Catalysts
U. M. Dzhemilev, A. G. Ibragimov, L. O. Khafizova, L. R. Yakupova and L. M. Khalilov
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
12 .     15-nonacosanol
C29H60O     ÏàËÆ¶È:66.6%
Journal of the Chinese Chemical Society          2009          56          600-605
Palaeophytochemical Components from the Miocene-Fossil Wood of Pinus griffithii
Jian-Rong Luo, Qing-Yun Ma, You-Xing Zhao,Tie-Mei Yi, Cheng-Sen Li and Jun Zhou
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
13 .     trans-dec-5-ene
    ÏàËÆ¶È:66.6%
Organic Magnetic Resonance          1976          8          426-431
13C chemical shifts of some model olefins
P. A. Couperus, A. D. H. Clague and J. P. C. M. van Dongen
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
14 .     3-methyl-thiane
    ÏàËÆ¶È:66.6%
Organic Magnetic Resonance          1976          8          469-476
13C n.m.r. of organosulphur compounds: II¡ª13C chemical shifts and conformational analysis of methyl substituted thiacyclohexanes
Giovanna Barbarella, Pasquale Dembech, Anna Garbesi and Antonino Fava
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
15 .     n-Butyl phenyl selenide
    ÏàËÆ¶È:62.5%
Canadian Journal of Chemistry          2009          87          678-683
On the reactivity of indium(III) benzenechalcogenolates (chalcogen = sulfur and selenium) towards organyl halides for the synthesis of organyl phenyl chalcogenides
Clovis Peppe and Li¨¦rson Borges de Castro
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
16 .     (R)-5-butyltetrahydrofuran-2-ol(Major isomer)
C8H16O2     ÏàËÆ¶È:62.5%
Organic Letters          2007          Vol. 9, No. 10          1975-1978
Ene-yne Tetrahydrofurans from the Sponge Xestospongia muta. Exploiting a Weak CD Effect for Assignment of Configuration
Brandon I. Morinaka, Colin K. Skepper, and Tadeusz F. Molinski
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
17 .     7,8-bis-bromomethyl-tetra-decane
C16H32Br2     ÏàËÆ¶È:62.5%
Tetrahedron Letters          2000          41          8237-8241
Solubilized zirconocene dihydride as a promotor of alkene coupling reactions
Peter Wipf, Xiaodong Wang
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
18 .     (E,E)-1,1,3,3-tetramethyl-1,3-bis(1-heptenyl)disiloxane
C18H38OSi2     ÏàËÆ¶È:62.5%
Chinese Chemical Letters          2010          21          312-316
Tri(t-butyl)phosphine-assisted selective hydrosilylation of terminal alkynes
Wei Wu; Xiao Yun Zhang; Shou Xing Kang; Yan Min Gao
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
19 .     compound 3f
C9H16O2     ÏàËÆ¶È:62.5%
Tetrahedron Letters          2004          45          9225-9227
An efficient stereoselective synthesis of (E)- and (Z)-trisubstituted alkenes from unactivated Baylis-Hillman adducts using NaBH4/CuCl2¡¤2H2O
Biswanath Das, Joydeep Banerjee, Anjoy Majhi, Gurram Mahender
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
20 .     (Z)-2-octene
    ÏàËÆ¶È:62.5%
Organic Magnetic Resonance          1973          5          147-153
Configurations and conformations in acyclic, unsaturated hydrocarbons. A 13C NMR study
J. W. de Haan and L. J. M. Van de Ven
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
21 .     2-methylhept-2-ene
    ÏàËÆ¶È:62.5%
Organic Magnetic Resonance          1976          8          426-431
13C chemical shifts of some model olefins
P. A. Couperus, A. D. H. Clague and J. P. C. M. van Dongen
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
22 .     1-Oxaspiro[4.5]decan-2-one
    ÏàËÆ¶È:57.1%
Molecules          2004          9          330-348
Masked ¦Ø-Lithio Ester Enolates: Synthetic Applications
Miguel Yus, Rosario Torregrosa and Isidro M. Pastor
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
23 .     1-Heptanethiol
    ÏàËÆ¶È:57.1%
Molecules          2009          14          4634-4643
3-(2-Aminophenyl)-4-methyl-1, 3-thiazole-2(3H)-thione as an Ecofriendly Sulphur Transfer Agent to Prepare Alkanethiols in High Yield and High Purity
Mohammed Amine Mehdid, Ayada Djafri, Christian Roussel and Federico Andreoli
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
24 .     cis-decalin-9-carboxylic acid
C11H18O2     ÏàËÆ¶È:57.1%
Helvetica Chimica Acta          1978          61          2831-2842
Photochemische Reaktionen. 99. Mitteilung. Photochemistry of N-Acylimidazoles. IV. Structural Factors Leading to Norrish Type II Elimination and to Cyclobutanol Formation in the Photolysis of Acylimidazoles
Shigeo Iwasaki
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
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1

²éѯ½á¹û£º¹²²éµ½11¸ö»¯ºÏÎï(²éѯ½á¹û½ö¹©²Î¿¼)
1 .     Navirine B
C30H40N2O3     ÏàËÆ¶È:53.5%
Natural Product Communications          2008          3          1985-1989
Diterpenoid Alkaloids and Phenol Glycosides fromAconitum naviculare (Br¨¹hl) Stapf.
Stefano Dall¡¯Acqua, Bharat B. Shrestha , Mohan Bikram Gewali, Pramod Kumar Jha ,Maria Carrara and Gabbriella Innocenti
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
2 .     Paniculatine
C31H35NO7     ÏàËÆ¶È:51.7%
Chemistry of Natural Compounds          2000          36          419-477
HETISANE-TYPE DITERPENOID ALKALOIDS
I. A. Bessonova and Sh. A. Saidkhodzhaeva
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
3 .     paniculatine
    ÏàËÆ¶È:51.7%
Journal of Natural Products          1989          Vol 52          430
The Structure of Paniculatine: a Revision
A. Katz
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
4 .     Bongkrekic acid
    ÏàËÆ¶È:51.6%
Tetrahedron Letters          2004          45          8863-8866
Total synthesis of (+)-bongkrekic acid
Mitsuru Shindo, Tomoyuki Sugioka, Yuko Umaba, Kozo Shishido
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
5 .     XML-2
    ÏàËÆ¶È:51.5%
The Journal of Antibiotics          1993          46          141-148
ENZYMATIC DIMERIZATION OF PENICILLIN X
HITOSI AGEMATU, Tosmo TSUCHIDA, KAICHIRO KOMINATO, NORIO SHIBAMOTO, TAKEO YOSHIOKA, HIROSHI NISHIDA, ROKURO OKAMOTO, TAKASHI SHIN, SAWAO MURAO
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
6 .     Benzyl 12(S)-[[N-(tert-Butyloxy)carbonyl]aminol-4-methoxy-11-o xo-10-aza-2-oxatricyclo[12.2.2.1(3,7)]nonadeca-3,5,7(19),14,16,17-hexaen-9(S)-carboxylate
C31H34N2O7     ÏàËÆ¶È:50%
Bioorganic & Medicinal Chemistry          1995          3          1579-1593
Key analogs of the tetrapeptide subunit of RA-VII and deoxybouvardin
Dale L. Boger, Jiacheng Zhou, Brian Winter, Paul A. Kitos
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
7 .     10-N-Demethyl-10-N-(6'-phthalimidohexyl)-galanthamine
C30H34N2O5     ÏàËÆ¶È:50%
Bioorganic & Medicinal Chemistry          1998          6          1835-1850
Potent acetylcholinesterase inhibitors: design, synthesis, and structure¨CActivity relationships of bis-interacting ligands in the galanthamine series
Aude Mary, Dolor Zafiarisoa Renko, Catherine Guillou, Claude Thal
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
8 .     (1S,2R,5S)-5-methyl-2-[1-methyl-1-(2-naphthyl)ethyl]cyclohexyl (1S,4R)-5-(6-chloro-3-pyridyl)-2-oxa-3-azabicyclo[2.2.2]oct-5-ene-3-carboxylate
C32H35N2O3Cl     ÏàËÆ¶È:50%
The Journal of Organic Chemistry          1998          63          8397-8406
Total Synthesis of (?)-Epibatidine Using an Asymmetric Diels?Alder Reaction with a Chiral N-Acylnitroso Dienophile
Sakae Aoyagi, Ryuta Tanaka, Masaichi Naruse, and Chihiro Kibayashi
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
9 .     5,11,17,23-tetra-(tert-butyl)-25,27-bis[3-(phenoxyacetyl)penicillopropyloxy]-26,28-dihydroxycalix[4]arene
C82H100N4O14S2     ÏàËÆ¶È:50%
Bioorganic & Medicinal Chemistry          2011          19          7534-7540
Molecular drug-organiser: Synthesis, characterization and biological evaluation of penicillin V and/or nalidixic acid calixarene-based podands
Adel Ben Salem, Guillaume Sautrey, St¨¦phane Fontanay, Rapha?l E. Duval, Jean-Bernard Regnouf-de-Vains
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
10 .     2-(4-hydroxymethyl-1,3,4,5-tetrahydroxy-2-piperidinyl)-2-[(O-t-butylcarbonyl)tyrosylamino]acetic acid n-butyl ester p-toluenesulfonate salt
    ÏàËÆ¶È:50%
The Journal of Antibiotics          2000          53          1282-1292
Synthesis and Activity of Analogues of SB-219383: Novel Potent Inhibitors of Bacterial Tyrosyl tRNA Synthetase
JOHN M. BERGE,NIGEL J. P. BROOM,CATHERINE S. V. HOUGE-FRYDRYCH,RICHARD L. JARVEST,LUCY MENSAH,DAVID J. MCNAIR,PETER J. O'HANLON,ANDREW J. POPE and STEPHEN RITTENHOUSE
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
11 .     6'-O-cinnamoylmussaenosidic acid
C25H30O11     ÏàËÆ¶È:50%
Journal of Natural Products          2011          74          943-948
HCV-NS3/4A Protease Inhibitory Iridoid Glucosides and Dimeric Foliamenthoic Acid Derivatives from Anarrhinum orientale
Riham Salah El Dine, Azza R. Abdel Monem, Ali M. El-Halawany, Masao Hattori, and Essam Abdel-Sattar
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
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yubo7758: ½ð±Ò+1, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸ 2012-10-18 15:27:28
1 .     ellagic acid
   3
ÏàËÆ¶È:71.4%
Chemistry & Biodiversity          2004          Vol.1          426
Novel Lipid-Peroxidation- and Cyclooxygenase-Inhibitory Tannins from Picrorhiza kurroa Seeds
Yanjun Zhang, David L. DeWitt, Sorimuthu Murugesan, and Muraleedharan G. Nair
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
2 .     ellagic acid
    ÏàËÆ¶È:71.4%
China Journal of Chinese Materia Medica          2007          32          496-500
Studies on chemical constituents in fruits of Eucalyptus globulus
YANG Xiuwei, GUO Qingmei
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
3 .     ellagic acid
C14H6O8     ÏàËÆ¶È:71.4%
China Journal of Chinese Materia Medica          2006          31          1503-1506
Studies on chemical constituents in roots of Euphorbia soongarica
SHI Xinhong, DU xiaohong, DU Xiaoli, KONG Lingyi
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
4 .     ÷·»¨Ëá
    ÏàËÆ¶È:71.4%
China Journal of Chinese Materia Medica          2005          30          1131-1132
˼éÉßÝԵĻ¯Ñ§³É·ÖÑо¿ II
´÷ ÖÒ, Íõ¸ÖÁ¦, Áõ Ñà, ÕÅ ¼Ì, ÁÖÈð³¬
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
5 .     ellagic acid
    ÏàËÆ¶È:71.4%
China Journal of Chinese Materia Medica          2002          27          43-45
Studies on the Chemical Constituents in the Leaves of Cyclocarya paliurus
YI Xing, SHI Jiangong, ZHOU Guangxiong, XIE Mingyong
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
6 .     Ellagic acid
C14H6O8     ÏàËÆ¶È:71.4%
Natural Product Sciences          2008          14          1-11
Peroxynitrite scavengers from Phellinus linteus
Jeong, Da-Mi; Jung, Hyun-Ah; Kang, Hye-Sook; Choi, Jae-Sue
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
7 .     ellagic acid
    ÏàËÆ¶È:71.4%
Zeitschrift f¨¹r Naturforschung B          2005          60b          555-560
Tannins and Flavonoids from the Erodium cicutarium Herb
Izabela Fecka and Wojciech Cisowski
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
8 .     ellagic acid
C14H6O8     ÏàËÆ¶È:71.4%
Phytochemistry          1990          29          251-256
Ellagic compounds from Diplopanax stachyanthus
Duc Do Khac,Sung Tran-Van,Angela Martha Campos,Jean-Yves Lallemand,Marcel Fetizon
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
9 .     ellagic acid
C14H6O8     ÏàËÆ¶È:71.4%
Molecules          2010          15          1453-1465
Identification of Major Phenolic Compounds from Nephelium lappaceum L. and Their Antioxidant Activities
Nont Thitilertdecha, Aphiwat Teerawutgulrag, Jeremy D. Kilburn and Nuansri Rakariyatham
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
10 .     ÷·»¨Ëá
    ÏàËÆ¶È:71.4%
Chinese Traditional and Herbal Drugs          2000          31          92-93
ÇൺÀÏðٲݻ¯Ñ§³É·ÖµÄÑо¿
ÀîÁÕ²¨,ÂíÌ첨,ФÔÂÐÇ,´Þ±¦¹ú,ÍõÓñÀö
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
11 .     ellagic acid
    ÏàËÆ¶È:71.4%
Chinese Pharmaceutical Journal          2011          46          20-23
Polyphenols from Potentilla discolor Bunge
ZHANG Wei-wei, ZHANG Peng, CHENG Wei, WANG Bin, WANG Jing-li, ZHANG Qing-ying*, LIANG Hong, ZHAO Yu-ying
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
12 .     ellagic acid
    ÏàËÆ¶È:71.4%
Journal of Shenyang Pharmaceutical University          2010          27          530-532
Constituentswith anti-diabetic activity from the involucre of Castanea mollissima Blume.
ZHANG Lin, GAO Hui-yuan, Masaki BABA, Yoshihito OKADA, Toru OKUYAMA, WU Li-jun
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
13 .     ellagic acid
    ÏàËÆ¶È:71.4%
Bioscience, Biotechnology, and Biochemistry          2001          65          1869-1871
Ellagic Acid Formation from Galloylglucoses by a Crude Enzyme of Cornus capitata Adventitious Roots
Norie TANAKA, Koichiro SHIMOMURA, Kanji ISHIMARU
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
14 .     Ellagic acid
    ÏàËÆ¶È:71.4%
Acta Pharmaceutica Sinica          2010          45          334-337
One new galloyl glycoside from fresh leaves of Psidium guajava L.
SHU Ji-cheng, CHOU Gui-xin*
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
15 .     4-Bromo-2-methoxybenzenamine
    ÏàËÆ¶È:57.1%
Canadian Journal of Chemistry          2009          87          440-447
Synthesis of arylbromides from arenes and Nbromosuccinimide (NBS) in acetonitrile - A convenient method for aromatic bromination
Eli Zysman-Colman, Karla Arias, and Jay S. Siegel
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
16 .     ellagic acid
    ÏàËÆ¶È:57.1%
Chinese Traditional and Herbal Drugs          2008          39          1612-1616
Chemical constituents of Discocleidion rufescens(¢ó)
ZHU Hua-xu; TANG Yu-ping; GONG Zhu-nan; MIN Zhi-da
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
17 .     N,N,N',N'-Tetrupropyl-furan-2,5-dicarboxamid
C18H30N2O3     ÏàËÆ¶È:50%
Helvetica Chimica Acta          1980          63          191-196
Ionophore vom Typ der 3-Oxapentandiamide
Ern? Pretsch, Daniel Ammann, Hans F. Osswald, Mare G¨¹ggi, Wilhelm Simon
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
18 .     formylpyrrothine
C7H6N2O2S2     ÏàËÆ¶È:50%
Journal of Natural Products          2010          73          1164-1166
Dithiolopyrrolone Antibiotic Formation Induced by Adding Valeric Acid to the Culture Broth of Saccharothrix algeriensis
Rabiaa Merrouche, Noureddine Bouras, Yannick Coppel, Florence Mathieu, Marie-Carmen Monje, Nasserdine Sabaou and Ahmed Lebrihi
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
19 .     pyromucic acid
    ÏàËÆ¶È:50%
Acta Pharmaceutica Sinica          2002          Vol 37          784-787
STUDIES ON THE CHEMICAL CONSTITUENTS OF SPATHOLOBUS SUBERECTUS DUNN
CUI Yan jun; LIU Ping; CHEN Ruo yun
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
20 .     2-trideuteriomethylpyridine-4,6-d2
    ÏàËÆ¶È:50%
Journal of Heterocyclic Chemistry          2009          46          213-216
Synthesis and spectroscopic properties of some di-and trideuterated methylpyridines
James W. Pavlik,Tharinee Vongnakorn and Supawan Tantayanon
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
21 .     N1,N4-bis(1H-1,2,4-triazol-3-yl)phenylenediformamidine
C12H12N10     ÏàËÆ¶È:50%
Journal of Heterocyclic Chemistry          2009          46          837-842
Utility of p-phenylenediformamidine in the synthesis of bisazoles and phenanthroline
Saleh M. Al-Mousawi and Abdel-Zaher A. Elassar
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
22 .     5-Methyl-2-morpholino-7H-1,3,4-thiadiazolo[3,2-a]pyrimidin- 7-one
C10H13N4O2S     ÏàËÆ¶È:50%
Journal of Heterocyclic Chemistry          2005          42          1105-1109
Preparation of 2-amino-5-methyl-7H-1,3,4-thiadiazolo[3,2-]pyrimidin-7-ones
Saifidin Safarov,Muhamacho Ahmadovich Kukaniev,Heinz Kolshorn and Herbert Meier
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
23 .     5-(2-Furfurylidene)barbituric acid
C9H6N2O4     ÏàËÆ¶È:50%
Journal of Heterocyclic Chemistry          2001          38          655-657
A simple method for knoevenagel condensation of ,¦Â-conjugated and aromatic aldehydes with barbituric acid
Branko S. Jursic
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
24 .     4-chloro-5-(dimethylamino)-2H-pyridazin-3-one
C6H8N3OCl     ÏàËÆ¶È:50%
Journal of Heterocyclic Chemistry          2000          37          1591-1595
Reaction of chloropyridazines with N,N-dimethylformamide
Woo Song Lee, Yong-Jin Yoon and Sung-Kyu Kim
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
25 .     4-chloro-5-(dimethylamino)-2-methyl-2H-pyridazin-3-one
C7H10N3OCl     ÏàËÆ¶È:50%
Journal of Heterocyclic Chemistry          2000          37          1591-1595
Reaction of chloropyridazines with N,N-dimethylformamide
Woo Song Lee, Yong-Jin Yoon and Sung-Kyu Kim
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
26 .     (S)-1-amino-2-phenylethyl-1-2H-tetrazole
C9H11N5     ÏàËÆ¶È:50%
Heterocycles          2008          76          1191-1204
A New Chiral Synthesis of a Bicyclic Enedione Containing a Seven-Membered Ring Mediated by a Combination of Chiral Amine and Br?nsted Acid
Takashi Nagamine, Kohei Inomata, and Yasuyuki Endo
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
27 .     1-(4-dimethylamino)[4,6-dichloro-1,3,5-triazin-2-yl]pyridinium chloride
C12H16N5O2     ÏàËÆ¶È:50%
Heterocycles          2006          68          1393-1400
Synthesis of 4-(Dimethylamino)pyridinium-substituted Pyrazine, Pyridazine, 1,3,5-Triazine, Purine, and Imidazole
Andreas Schmidt* and Thorsten Mordhorst
Structure      13C NMR   Ì¼Æ×Ä£Äâͼ
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