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Kinetics of Cl Atom Reactions. Anomaluous Fluorescence Behavior of Some Cl Atomic Transitions
Kwang-Yul Choo Korean Chemical Society 1980 Bulletin of the Korean Chemical Society Vol.1 No.1
During the study of the kinetics of Cl atom reactions by atomic fluorescence method we observed anomalous fluorescence emission for some atomic transitions. Instead of usual decrease of the fluorescence intensity by adding substrate, 1363 A transition $(^2P^{\circ}_{3/2}{\to}^2P_{1/2})$ intensity increased by adding substrate. From the normally behaved fluorescence lines the absolute rate constant for the reaction, Cl + $CH_3Cl{\to}$, was found to be $4.2{\times}10^{-13}$ cc/molecule sec at $20^{\circ}C$.
The Absolute Rate Measurement by Light Modulation-ESR Technique
주광열,Choo Kwang Yul,Gaspar Peter P. Korean Chemical Society 1977 대한화학회지 Vol.21 No.4
Modulated light signal과 trimethylsilyl 유리기의 전자상자성 공명 signal과의 phase shift를 측정함으로써 t-butoxy 유리기와 trimethylsilane의 절대 반응속도 상수는 $-50^{\circ}C$에서 $3{\times}10^{-2}M^{-1}{\cdot}sec^{-1}$으로 얻을 수 있었다. A rate constant is deduced for the reaction of tert-butoxy radicals and trimethylsilane from the measurement of the phase shift between the modulated light source and the ESR signal of trimethylsilyl radical. The rate constant was found to $3{\times}10^{-2}M^{-1}{\cdot}sec^{-1}$ at $-50^{\circ}C$.
A Direct Kinetic Study of Cl Atom Reactions
주광열,Kwang Yul Choo Korean Chemical Society 1979 대한화학회지 Vol.23 No.6
Flow-discharge-원자흡수선 측정법으로 $Cl(^2P_{1/2})$ 원자의 존재를 확인하였고 $Cl(^2P_{3/2})$ 원자의 여러 물질과의 반응속도를 직접적으로 측정하였다. 본 실험에서 얻은 결과는 간접적인 방법으로 얻은 반응속도와 거의 같음을 보였다. $Cl(^2P_{3/2})$ 원자와 $Cl(^2P_{1/2})$ 원자는 거의 같은 반응성을 가지며, 이러한 반응의 유사성 때문에 Cl(2P1/2) 원자가 Cl원자의 반응속도에는 그다지 큰 영향을 주지 않음을 보인다. A non-Boltzman equilibrium population of $Cl(^2P_{1/2})$ atoms has been observed in a flow discharge-atomic absorpion experiment. The rates of reactions of $Cl(^2P_{3/2})$ atoms with various substrates are in reasonable agreement with reported values determined by competition methods. The similar reactivities of both $Cl(^2P_{1/2})$ and $Cl(^2P_{3/2})$ atoms indicate that the contribution of $Cl(^2P_{1/2})$ atoms to the rate measurements in the competition experiment is small, and this negligible contribution may be the reason why the rate constants obtained by assuming single reactive species (in competition method) agree well with our direct measurement.
Young Moo Choo,Kwang Sik Lee,Hyung Joo Yoon,Bo Yeon Kim,Mi Ri Sohn,Jong Yul Roh,Yeon Ho Je,Nam Jung Kim,Iksoo Kim,Soo Dong Woo,Hung Dae Sohn,Byung Rae Jin 한국응용곤충학회 2010 한국응용곤충학회 학술대회논문집 Vol.2010 No.10
Bee venom contains a variety of peptides and enzymes, including serine proteases. While the presence of serine proteases in bee venom has been demonstrated, the role of these proteins in bee venom has not been elucidated. Furthermore, there is currently no information available regarding the melanization response or the fibrin(ogen)olytic activity of bee venom serine protease, and the molecular mechanism of its action remains unknown. Here we show that bee venom serine protease (Bi-VSP) is a multifunctional enzyme. In insects, Bi-VSP acts as an arthropod prophenoloxidase (proPO)-activating factor (PPAF), thereby triggering the phenoloxidase (PO) cascade. Bi-VSP injected through the stinger induces a lethal melanization response in target insects by modulating the innate immune response. In mammals, Bi-VSP acts similarly to snake venom serine protease, which exhibits fibrin(ogen)olytic activity. Bi-VSP activates prothrombin and directly degrades fibrinogen into fibrin degradation products, defining roles forBi-VSP as a prothrombin activator, a thrombin-like protease, and a plasmin-like protease. These findings provide a novel view of the mechanism of bee venom in which the bee venom serine protease kills target insects via a melanization strategy and exhibits fibrin(ogen)olytic activity.
주광열,이필희,Kwang Yul Choo,Pil Heui Lee 대한화학회 1980 대한화학회지 Vol.24 No.2
정전기적모델과 결합의 단순한 부가성을 이용하여 아주 극성인 화합물의 표준생성열$({\Delta}H_f\;^{\circ})$를 계산하는 간단한 방법을 제안하였다. 이 ${\Delta}H_f\;^{\circ}$에 대한 할로메탄의 bond 기여도는 각각 ${\Delta}H_f\;^{\circ}(C-F)=-36.44\;kcal/mole,\;{\Delta}H_f\;^{\circ}(C-Cl)=-2.57\;kcal/mole,\;{\Delta}H_f\;^{\circ}(C-Br)=5.32\;kcal/mole,\;{\Delta}H_f\;^{\circ}(C-I)=19.18\;kcal/mole,\;and\;{\Delta}H_f\;^{\circ}(C-H)=-3.61\;kcal/mole$로 얻어졌고 이 갑들과 정전기적 에너지들로부터 계산한 ${\Delta}H_f\;^{\circ}$는 실험치와 잘 일치함을 보였다. By using electrostatic model and simple bond additivity scheme a reasonable and simple method was developed for the estimation of standard enthalpy of formation $({\Delta}H_f\;^{\circ})$ of very polar compounds. The bond contributions to the enthalpy of formation for halomethanes were; ${\Delta}H_f\;^{\circ}(C-F)=-36.44\;kcal/mole,\;{\Delta}H_f\;^{\circ}(C-Cl)=-2.57\;kcal/mole,\;{\Delta}H_f\;^{\circ}(C-Br)=5.32\;kcal/mole,\;{\Delta}H_f\;^{\circ}(C-I)=19.18\;kcal/mole,\;and\;{\Delta}H_f\;^{\circ}(C-H)=-3.61\;kcal/mole$, respectively. Using these values and calculated electrostatic energies, the estimated ${\Delta}H_f\;^{\circ}$ values were estimated and found to be in good agreement with observed values.
추광율,최무현,Choo Kwang Yul,Choe Mu Hyun Korean Chemical Society 1985 Bulletin of the Korean Chemical Society Vol.6 No.4
A Very Low Pressure Reactor (VLPR) is constructed for the kinetic study of atom-molecule bimolecular elementary reactions. The basic principles and the versatility of the method are described. By using the VLPR technique the forward (k1) and the reverse (k-1) rate constants for Br atom reaction with trimethylsilane are studied; Br + $(CH_3)_3$SiH k1 ${\leftrightarrow}$ k-1 HBr + $(CH_3)_3$Si. From the kinetic data and the entropy estimation the bond dissociation energy for Si-H bond in trimethylsilane is calculated to be 90.1 kcal/mole $({\pm}1.1$ kcal/mole). The Arrhenius parameters for k1 are found to be log A = 10.6 l/mole·sec, $E_a$ = 4.4 kcal/mole respectively. For the comparison purpose analogous reaction for carbon compound ; Br + $(CH_3)_3$CH ${\rightarrow}$ HBr + $(CH_3)_3$C was also studied. The corresponding rate constant and equilibrium constant at $25^{\circ}C$ are found to be 2.67 ${\times}$ $10^6l$/mole${\cdot}$sec and 160 respectively.
Song, Se-Ahn,Choo, Kwang-Yul Korean Chemical Society 1984 Bulletin of the Korean Chemical Society Vol.5 No.1
The relative Arrhenius parameters for t-butoxy radical decomposition (log $A_d$, $E_d$) and hydrogen abstraction of t-butoxy radical from hydrogen donor (log $A_d$, $E_d$) by competitive method were obtained as follows: for cyclohexane; log $A_a/A_d$ = -4.17 mole/l and $E_d-E_a$ = 9.01 kcal/mole, for isobutane; log $A_a/A_d$ = -5.70 mole/l and $E_e-E_a$= 11.0 kcal/mole. From the reported Arrhenius parameters for t-Butoxy radical decomposition reactions the parameters for t-Butoxy radical reactions with isobutane and cyclohexane are estimated to be log $A(l/mol{\cdot}sec)$ = 8.4, $E_a$ = 4.3 kcal/mol and $log A (l/mol{\cdot}sec)= 9.9,\;E_a$ = 6.3 kcal/mol, respectively.
Expression Profile of Cathepsin B in the Fat Body of Bombyx mori during Metamorphosis
Bo Yeon Kim,Kwang Sik Lee,Young Moo Choo,Hyung Joo Yoon,Pil Don Kang,Soo Dong Woo,Hung Dae Sohn,Jong Yul Roh,Yeon Ho Je,Byung Rae Jin 한국응용곤충학회 2009 한국응용곤충학회 학술대회논문집 Vol.2009 No.05
Background: Proteolytic enzymes are involved in insect molting and metamorphosis and play a vital role in the programmed cell death of obsolete organs. Here we show the expression profile of cathepsin B in the fat body of the silkworm Bombyx mori during development. We also compared the expression profile of B. mori cathepsins B (BmCatB) and D (BmCatD) in the fat body during the larval-pupal transformation of B. mori in the BmCatB or BmCatD RNA interference (RNAi) process. Results: BmCatB is ecdysone-induced and expressed in the fat body of B. mori during the molting, and the larval-pupal and pupal-adult transformations, and its expression leads to programmed cell death. In particular, BmCatB is highly expressed in the fat body of B. mori during the larval-pupal transformation and BmCatB RNAi treatment resulted in the arrest of the larval-pupal transformation. RNAi-treated BmCatB knock-down sustained the expression of BmCatD during the larval-pupal transformation. On the other hand, BmCatD RNAi up-regulated the expression of BmCatB in the fat body of final instar larvae. Conclusion: Based on these results, we conclude that BmCatB is involved in the programmed cell death of the fat body during B. mori metamorphosis and that BmCatB and BmCatD contribute collaboratively to B. mori metamorphosis
Arrhenius Parameters for the Thermal Decomposition of Trichloroethylene
Kim, Hack-Jin,Choo, Kwang-Yul Korean Chemical Society 1983 Bulletin of the Korean Chemical Society Vol.4 No.5
A thermal decomposition of trichloroethylene was studied in the temperature range of 440-$460^{\circ}C$ by using the conventional static system. In order to investigate the pressure dependence of reaction and to eliminate free radical process, propylene was used as the bath gas. The pressure range investigated was 10∼900 Torr. The decomposition was the unimolecular dehydrochlorination and the reaction products were hydrogen chloride and dichloroacetylene. Results were interpreted in terms of the Ric-Ramsperger-Kassel-Marcus (RRKM) unimolecular rate theory and the Arrhenius parameters were determined from fall-off behaviors. The Arrhenius parameters are found to be log $A=13.8{\pm}0.2sec^{-1}$ and E = $56.6{\pm}0.7$ kcal/mole, respectively.