• 제목/요약/키워드: Nucleophiles

검색결과 125건 처리시간 0.019초

Disappearance of the ${\alpha}$-Effect : Reaction of p-Nitrophenyl Acetate with Various Aryloxides and Benzohydroxamates in the Presence of Cetyltrimethylammonium Bromide

  • Dong Sook Kwon;Seung Eun Lee;Jin Kyung Jung;Jong Yoon Park;Ik Hwan Um
    • Bulletin of the Korean Chemical Society
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    • 제13권5호
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    • pp.486-491
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    • 1992
  • The rate constants for the reactions of p-nitrophenyl acetate with 6 different aryloxides and 2 benzohydroxamates have been measured spectrophotometrically in water containing various concentrations of cetyltrimethylammonium bromide (CTAB). The reactivity of the nucleophiles has been demonstrated to be significantly enhanced as the concentration of the surfactant increases up to a certain point. When the basicities of the aryloxides are comparable, the rate enhancement is more prominent for the aryloxide having larger binding constant to the micellar aggregate. Benzohydroxamates exhibitis significantly large ${\alpha}$-effect in the absence of the surfactant, although, the ${\alpha}$-effect nucleophiles are considered to be more solvated in water than the corresponding normal nucleophile. Thus, the solvation effect does not appear to be solely responsible for the ${\alpha}$-effect. Interestingly, the large ${\alpha}$-effect disappears in the presence of the surfactant. Therefore, one might attribute the disappearance of the ${\alpha}$-effect to solvent effect. However, a structural change of the reactive ${\alpha}$ -effect nucleophile into unreactive ones would also be considered to be responsible for the absence of the ${\alpha}$-effect in the present system.

Formation of Mo(NAr)(PMe₃)₂Cl₃and Mo₂(PMe₃)₄Cl₄from Reduction of Mo(NAr)₂Cl₂(DME) with Mg in the Presence of PMe₃[Ar=2,6-diisopropylphenyl]

  • 정건수;박병규;Lee, Soon W.
    • Bulletin of the Korean Chemical Society
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    • 제18권2호
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    • pp.213-217
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    • 1997
  • Magnesium reduction of Mo(N-C6H3-2,6-i-Pr2)2Cl2(DME) in the presence of trimethylphosphine led to a mixture of Mo(N-C6H3-2,6-i-Pr2)(PMe3)2Cl3, 1, and Mo2(PMe3)4Cl4, 2. In solution 1 is slowly air-oxidized to Mo(N-2,6-i-Pr2-C6H3)(OPMe3)(PMe3)Cl3, 3. 1 is chemically inert to carbon nucleophiles (ZnMe2, ZnEt2, AlMe3, AlEt3, LiCp, NaCp, TlCp, NaCp*, MeMgBr, EtMgBr), oxygen nucleophiles (LiOEt, LiO-i-Pr, LiOPh, LiOSPh), and hydrides (LiBEt3H, LiBEt3D). Crystal data for 1: orthorhombic space group P212121, a=11.312(3) Å, b=11.908(3) Å, c=19.381(6) Å, Z=4, R(wR2)=0.0463 (0.1067). Crystal data for 2: monoclinic space group Cc, a=18.384(3) Å, b=9.181(2) Å, c=19.118(3) Å, b=124.98(1)°, Z=4, R(wR2)=0.0228 (0.0568). Crystal data for 3: orthorhombic space group P212121, a=11.464(1) Å, b=14.081(2) Å, c=16.614(3) Å, Z=4, R(wR2)=0.0394 (0.0923).

Kinetics and Mechanism of the Anilinolysis of Aryl N,N-Dimethyl Phosphoroamidochloridates in Acetonitrile

  • Barai, Hasi Rani;Lee, Hai Whang
    • Bulletin of the Korean Chemical Society
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    • 제35권3호
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    • pp.753-757
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    • 2014
  • The nucleophilic substitution reactions of Y-aryl N,N-dimethyl phosphoroamidochloridates with substituted anilines and deuterated anilines are kinetically investigated in acetonitrile at $65.0^{\circ}C$. A stepwise mechanism with a rate-limiting leaving group departure from the intermediate is proposed based on the positive ${\rho}_{XY}$ value. The deuterium kinetic isotope effects involving deuterated anilines show secondary inverse with all the nucleophiles, rationalized by a dominant backside nucleophilic attack.

Synthesis of C-(2-Furyl)-N-(4-nitrophenyl)methanohydrazonyl Bromide. Reactions with Nucleophiles and Active Methylene Compounds

  • Hassaneen, Hamdi M.;Shawali, Ahmad S.;Elwan, Nehal M.;Ibrahim, Al Hossien A.
    • Archives of Pharmacal Research
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    • 제14권3호
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    • pp.266-270
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    • 1991
  • Synthesis of C-(2-furyl)-N-(4-nitrophenyl)methanohydrazonyl bromide 2 is described. Treatment of 2 with uncleophiles affords the corresponding substitution products 3-7. Also, compound 2 reacts with selenocyanate anion and thiocyanate anion and give the corresponding selenadiazoline and thiadiazoline 8 and 9, respectively. Moreover, reaction of 2 with enolates of various active methylene compounds afforded the pyrazole derivatives 17-20.

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Reactions with Hydrazidoyl Halides (V): Synthesis of Some Amidrazones, Hydrazides, Pyrazoles and Pyrazolo [3, 4-d] pyridazine Derivatives

  • Attaby, Fawzy A.;Zaki, Mayssoune Y.;Abdelhamid, Abdou O.;Ramadan, Nazmy A.
    • Archives of Pharmacal Research
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    • 제13권4호
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    • pp.314-318
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    • 1990
  • 2-Bromo (2'-benzofury)gloxal-2-aryhydrazones I reacted with nucleophiles displacing the bromide. Treatment of I with active methylene compounds yield the pyrazole derivatives VIII-XI. Compounds XII-XIV reacted with hydrazine to give pyrazolo (3, 4-dipyridazine derivative XIV-XIV. The structures of the products were assigned and confirmed on the basis of their elemental analysis and spectral data.

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Asymmetric Ring Opening of Epoxides Catalyzed by Novel Heterobimetallic Schiff-Bases Containing Transition Metal Salts

  • Kawthekar, RahulB;Bi, Wentao;Kim, Geon-Joong
    • Bulletin of the Korean Chemical Society
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    • 제29권2호
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    • pp.313-318
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    • 2008
  • An enantioselective ring opening of racemic terminal epoxides has been achieved by using heterobimetallic cobalt salen complexes with variety of nucleophiles. They were proven to be highly enantioselective and reactive for the synthesis of valuable chiral building blocks in enantio-riched forms up to 98% ee.

s-Triazine의 Ring Transfromation에 의한 Pyrimidopyrimidine의 합성 (Synthesis of Pyrimidopyrimidine by Ring Transformation of s-Triazine)

  • 정원근;김상기;천문우;김득준
    • 약학회지
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    • 제28권2호
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    • pp.97-100
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    • 1984
  • We have investigated the feasibility of using cyclic ambident nucleophiles in s-triazine ring transformation reaction and found that they can replace the $N_{1}-C_{2-N_{3}$ fragment of s-triazine directly in basic conditions, yielding the corresponding bicyclic products. In this paper, we described the reaction and mechanistic aspects of s-triazine to pyrimidopyrimidine transformation by 6-aminouracil derivatives. This type of ring transformation is supposed to be first attempt that deals with the successful s-triazine to bicyclic heterocycle transformation.

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Synthesis of Some new 2-Azolyl-and Azinylthiopyrimidines

  • Sherif, Laila-Abrahim;Sherif, Sherif-M.;Rasha-A.M. Faty;Fattah, Abdel-Samei-M. Abdel
    • Archives of Pharmacal Research
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    • 제18권1호
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    • pp.51-55
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    • 1995
  • A facile convenient syntheses of the titled compounds, via reacting the precusor 2-amino-2-(pentane-2, 4-dion-3-yithio)-6-phenylpyrimidine-5-carbonitrile (1) with nitrogen nucleophiles and with the carbanions of some active methylene compounds, is reported. Chemical and spectroscopic evidence of the newly syntheised compounds are described.

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Kinetics and Mechanism of Aminolysis of Phenyl Benzoates in Acetonitrile

  • 고한중;이호찬;이해황;이익춘
    • Bulletin of the Korean Chemical Society
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    • 제16권9호
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    • pp.839-844
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    • 1995
  • The kinetics and mechanism of the reactions of phenyl benzoates with benzylamines and pyrrolidine are investigated in acetonitrile. The variations of ρX (ρXY>0) and ρZ (ρYZ<0) with respect to the substituent in the substrate (σY) indicate that the reactions proceed through a tetrahedral intermediate, T±, with its breakdown in the rate determining step. The large magnitudes of ρZ, ρXY and ρYZ as well as the effects of secondary kinetic isotope effects involving deuterated nucleophiles are also in line with the proposed mechanism.

Nucleophilic Substitution Reactions of Thiophenyl Phenylacetate with Benzylamines in Acetonitrile

  • 오혁근;김선경;이익춘
    • Bulletin of the Korean Chemical Society
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    • 제20권9호
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    • pp.1017-1020
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    • 1999
  • The aminolysis reactions of thiophenyl phenylacetates with benzylamines are investigated in acetonitrile at 55.0℃. Relatively large selectivity parameters, βx≒ 1.5, βz = -1.5~-1.8 and βxz = 0.92 together with the valid reactivity-selectivity principle are consistent with stepwise acyl transfer mechanism with rate limiting expulsion of the leaving group, thiophenolate anion, from the tetrahedral intermediate, T ± . The first order kinetics with respect to the benzylamine concentration and the realtively large secondary kinetic isotope effect (kH / kD = 1.2-1.7) involving deuterated benzylamine nucleophiles suggest a four center type transition state in which concurrent leaving group departure and proton transfer are involved.