• 제목/요약/키워드: N-H bond activation

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Theoretical Study of C-H σ-Bond Activation and Related Reactions

  • Sakaki, Shigeyoshi
    • Bulletin of the Korean Chemical Society
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    • 제24권6호
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    • pp.829-831
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    • 2003
  • Various theoretical studies of σ-bond activation of organic molecules by transition metal complexes arereviewed. In the homolytic σ-bond activation, the d orbital energy level of the central metal is an importantfactor, as well known. At the same time, the electron-withdrawing substituent which stabilizes the sp3 orbitalaccelerates the homolytic σ-bond activation. In the heterolytic C-H σ-bond activation of RH by $MXL_n$, the XHbond formation is an important driving force, where $MRL_n$ and HX are formed as products. The heterolytic σ-bond activation is also understood in terms of the electrophilic attack of the metal center to the substrate.

反應性의 結合 Orbital 理論 (Bond Orbital Theory of Chemical Reactivity)

  • 양강;이태규
    • 대한화학회지
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    • 제8권1호
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    • pp.20-24
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    • 1964
  • 종합 오비탈을 모형식으로 결합하여 분자 오비탈을 만드는 방법(linear combination of bond orbitals method, LCBO법)을 응용하여 할로겐화메탄($CH_nX_{4-n}$)과 이를 공변하는 원자(혹은 자유기)와의 추출반응(abstraction reaction $CH_nX_{4-n}\;+\;A\;{\to}\;CH_nX_{3-n}\;+\;XA$)에 대한 반응성을 연구하려는 것이 이 논문의 목적이다. 이 반응의 활성화에테르기 ${\eta}$를 계산하려고 다음과 같은 특정을 하였다. $CH_nX_{4-n}$분자가 활성화복합물로 변할때 그의 반응성 결합(reactive bond) C-X에 있는 두 전자는 완전히 이 분자의 타 ${\eta}전자계로부터 분리된다.이런 모델은 자미있는 직감적인 관념을 유인하게 되니 즉 반응성종합과 그의 주위에 있는 화학종합과의 상호작용에 의하여 ${\eta}$전자계의 반응성이 좌우된다는 것이다. 저자들의 이론적계산에 의하면 ${\eta}$는 다음식으로 표시된다. ${\varepsilon}={\zeta}+{\sum}_{i=1}^3{\eta}c-I,$ c-4 (1) Subscript C-i (i=1,2,3)는 C와 원자 i(i=H, Cl, Br, F,${\cdots}$)간의 화학결합을 표시하며 C-4 (4=(4=Cl, Br${\cdots}$) 는 반응성결합을 가르킨다. ${\zeta}$ξ는 상수한 바와 같이 완전분리상태에 있는 C-4종합과 공변원자 A간의 가상적 반응의 활성화에테르기이며 ${\eta}$C-i, C-4는 C-4와 그의 주위결합 C-i간의 상호작용에 의하여 안정화되는 에테르기를 표시한다. 결합강도와 양립하는 ${\eta}$치는 추출하여 (1)식에 대입하면 차식이 유도된다. ${\varepsilon}={\zeta}\;+\;N{\eta}c$-H, C-4 (2) N은 $CH_nX_{4-n}$분자중에 있는 C-4이상의 C-H 및 C-F결합들의 총수이다. 실험치의 를 N에 대하여 도시하면 $CH_nCo_{4-n}\;+\;H\;{\to}\;HCl\;+\;CH_nCl_{3-n},\;CH_nX_{4-n}\;+\;Na\;{\to}\;NaCl\;+\;CH_nCl_{3-n},\;CH_nX_{4-n} \;Na\;{\to}\;NaBr\;+\;CH_nCl_{3-n}$反應系들에 對하여 좋은 直線을 주니 (2)식이 實驗과 一致한다는 것이다

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카르보닐 탄소원자의 친핵치환 반응 (제5보). 아세톤 용매속에서의 Dialkylcarbamoyl Chloride의 할로겐 교환반응에 관한 속도론적 연구 (Nucleophilic Substitution at a Carbonyl Carbon Atom (V). Kinetic Studies on Halogen Exchange Reactions of N,N-Dialkylcarbamoyl Chlorides in Dry Acetone)

  • 김시준;이익춘
    • 대한화학회지
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    • 제19권1호
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    • pp.11-15
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    • 1975
  • Carbonyl 탄소원자의 반응성에 대한 연구의 일환으로 N,N-dimehtylcarbamoyl chloride와 N,N-diethylcarbamoyl chloride의 할로겐 교환반응을 아세톤 용매속에서 방사성 할라이드 이온을 사용하여 두 온도에서 속도론적으로 연구하였다. 그 결과를 alkylchloroformate의 경우와 비교하면, 친핵성의 순서는 비슷한 경향을 나타내나, 반응속도는 가용매분해나 alkylchloroformate의 경우보다 느리다. 활성화 피라미터 ${\Delta}H^*$${\Delta}S^*$$Cl^{\rightarrow}Br^{\rightarrow}I^-$는순서로 감소한다. 이 결과를 용매화 효과, bond-breaking, bond-formation 및 electronic requirment로 설명하였다.

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Benzyl Chloride의 Chlorine 交換反應 (Kinetic Studies of Chlorine Exchange between Benzyl Chloride and Radioactive Chloride Ion)

  • 박용자;이익춘
    • 대한화학회지
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    • 제9권1호
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    • pp.23-28
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    • 1965
  • 90% ethanol solution에서 benzyl chloride와 radioactive chloride($^{36}Cl^-$)와의 exchange를 反應速度論的으로 硏究하였으며 그 結果로 交換反應은 typical bimolecular reaction임을 알았고 그 activation parameter들은 각기 다음과 같았다. ${\Delta}H^{\neq}$= 18.50 Kcal ${\Delta}S^{\neq}$= -22.09 e.u. 특히 本實驗 缺課와 다른 實驗結果를 綜合討論함으로써 反應速度는 attacking anion의 nuclephilic ability에 크게 관계 됨을 입증할 수 있었으며 또한 exchange reaction에 있어서 halide들의 reactivity의 순서는 bond dissociation energy의 差로써 보다는 오히려 Swain의 nucleophilic parameter(n)로써 설명함이 더욱 타당함을 알았다.

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炭素二重結合에 대한 Mercaptan의 친핵성 첨가 반응의 Extrathermodynamic Relationship에 관한 연구 (Extrathermodynamic Relationships for the Nucleophilic Addition Reaction of Mercaptan to a Carbon Double Bond)

  • 박옥현;엄태섭
    • 대한화학회지
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    • 제13권4호
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    • pp.297-302
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    • 1969
  • The activation parameters for the nucleophilic addition reactions of n-propyl-, n-butyl-, n-amyl-and n-hexyl-mercaptan to 3, 4-methylene-dioxy-${\beta}$-nitrostyrene were determined at pH 5.8 and pH 2.0, and also the isokinetic temperature of the reactions at pH 5.8 was obtained numerically 262${\circ}$K, and at pH 2.0, 17.1${\circ}$K. From the values obtained above, the fact that the mercaptan having the longer carbon chain has the greater nucleophilicity of it in the addition reactions has been discussed by the extrathermodynamic analysis of ${\Delta}H^{\neq}$and ${\Delta}S^{\neq}$.

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Intramolecular Ion-Molecule Reactions within Ti+(CH3COCH3)n Heteroclusters: Oxidation Pathway via C=O Bond Activation

  • Koo, Young-Mi;Hong, Ki-Ryong;Kim, Tae-Kyu;Jung, Kwang-Woo
    • Bulletin of the Korean Chemical Society
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    • 제31권4호
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    • pp.953-958
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    • 2010
  • A laser ablation-molecular beam/reflectron time-of-flight mass spectrometric technique was used to investigate the ion-molecule reactions that proceed within $Ti^+(CH_3COCH_3)_n$ heterocluster ions. The reactions of $Ti^+$ with $CH_3COCH_3$ clusters were found to be dominated exclusively by an oxidation reaction, which produced $TiO^+(CH_3COCH_3)_n$ clusters. These ions were attributed to the insertion of a $Ti^+$ ion into the C=O bond of the acetone molecule within the heteroclusters, followed by $C_3H_6$ elimination. The mass spectra also indicated the formation of minor sequences of heterocluster ions with the formulas $Ti^+(C_3H_4O)(CH_3COCH_3)_n$ and $TiO^+(OH)(CH_3COCH_3)_n$, which could be attributed to C-H bond insertion followed by $H_2$ elimination and to the sequential OH abstraction by the $TiO^+$ ion, respectively. Density functional theory calculations were carried out to model the structures and binding energies of both the association complexes and the relevant reaction products. The reaction pathways and energetics of the $TiO^+\;+\;CH_2CHCH_3$ product channel are presented.

Novel Activation by Electrochemical Potentiostatic Method

  • 이학형;이준기;정동렬;권광우;김익현
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2009년도 춘계학술발표대회
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    • pp.29.1-29.1
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    • 2009
  • Fabrication of good quality P-type GaN remained as a challenge for many years which hindered the III-V nitrides from yielding visible light emitting devices. Firstly Amano et al succeeded in obtaining P-type GaN films using Mg doping and post Low Energy Electron Beam Irradiation (LEEBI) treatment. However only few region of the P-GaN was activated by LEEBI treatment. Later Nakamura et al succeeded in producing good quality P-GaN by thermal annealing method in which the as deposited P-GaN samples were annealed in N2 ambient at temperatures above $600^{\circ}C$. The carrier concentration of N type and P-type GaN differs by one order which have a major effect in AlGaN based deep UV-LED fabrication. So increasing the P-type GaN concentration becomes necessary. In this study we have proposed a novel method of activating P-type GaN by electrochemical potentiostatic method. Hydrogen bond in the Mg-H complexes of the P-type GaN is removed by electrochemical reaction using KOH solution as an electrolyte solution. Full structure LED sample grown by MOCVD serves as anode and platinum electrode serves as cathode. Experiments are performed by varying KOH concentration, process time and applied voltage. Secondary Ion Mass Spectroscopy (SIMS) analysis is performed to determine the hydrogen concentration in the P-GaN sample activated by annealing and electrochemical method. Results suggest that the hydrogen concentration is lesser in P-GaN sample activated by electrochemical method than conventional annealing method. The output power of the LED is also enhanced for full structure samples with electrochemical activated P-GaN. Thus we propose an efficient method for P-GaN activation by electrochemical reaction. 30% improvement in light output is obtained by electrochemical activation method.

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Kinetics and Mechanism of the Addition of Benzylamines to Ethyl-α-cyanocinnamates in Acetonitrile

  • Oh, Hyuck-Keun;Yang, Jin-Hee;Hwang, Young-Hee;Lee, Hai-Whang;Lee, Ik-Choon
    • Bulletin of the Korean Chemical Society
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    • 제23권2호
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    • pp.221-224
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    • 2002
  • Nucleophilic addition reactions of benzylamines (BA; $XC_6H_4CH_2NH_2$) to ethyl-${\alpha}$-cyanocinnamates (ECC;$YC_6H_4CH$=C(CN)COOEt) have been investigated in acetonitrile at $30.0^{\circ}C$. The rate is first order with respect to BA and ECC. The rate is slower than that expected from the additive effect of ${\sigma}^-$ or $R^-$ for the activating groups (CN and COOEt). Natural. bond orbital ${\pi}^{\ast}_{c=c}$ calculations show that the contribution of COOEt group may not be fully effective despite the coplanar molecular structure. The selectivity parameters including the cross-interaction constant (${\rho}_{xy}$ = -0.22) indicate that the addition occurs in a single step. The kinetic isotope effects ($k_H/k_D$=2.5-2.8) involving deuterated BA ($XC_6H_4CH_2ND_2$) nucleophiles and activation parameters (${\Delta}H^{\neq}=4{\sim}6\;kcal\;mol^{-1};{\Delta}S^{\neq}=-45{\sim}-52\;e.u.$) suggest a cyclic transition state in which N-$C_{\alpha}$ and H-$C_{\beta}$ bonds are formed concurrently.