• 제목/요약/키워드: o-Iodosobenzoate ion

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ETAMs 용액내에서 p-Nitrophenylvalate의 가수분해반응에 미치는 o-Iodosobenzoate Ion의 촉매효과 (The Catalytic Effects of o-Iodosobenzoate Ion on Hydrolysis of p-Nitrophenylvalate in ETAMs Solution)

  • 김정배
    • 한국환경과학회지
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    • 제20권1호
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    • pp.119-126
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    • 2011
  • In this study, reaction model and reactions rate accelerated by o-iodosobenzoate ion(IB$^{\ominus}$) on hydrolysis reaction of p-nitrophenyl valate(NPV) using ethyl tri-octyl ammonium mesylate(ETAMs) for quaternary ammonium salts, the phase transfer catalysis(PTC) reagent, were investigated. The effect of IB$^{\ominus}$ on hydrolysis reaction rate constant of NPV was weak without ETAMs solutions. Otherwise, in ETAMs solutions, the hydrolysis reactions exhibit higher first order kinetics with respect to the nucleophile, IB$^{\ominus}$, and ETAMs, suggesting that reactions are occurring in small aggregates of the three species including the substrate(NPV), whereas the reaction of NPV with OH$^{\ominus}$ is not catalyzed by ETAMs. Different concentrations of NPV were tested to measure the change of rate constants to investigate the effect of NPV as substrate and the results showed that the effect was weak. This means the reaction would be the first order kinetics with respect to the nucleophile. This behavior for the drastic rate-enhancement of the hydrolysis is referred as 'Aggregation complex model' for reaction of hydrophobic organic ester with o-iodosobenzoate ion(IB$^{\ominus}$) in hydrophobic quarternary ammonium salt(ETAMs) solutions.

CTAX 미셀 용액속에서 유기인 에스테르 화학물의 탈인산화 반응에 대한 OHθ 및 o-lodosobenzoate 이온의 영향 (Effect of OHθ and o-lodosobenzoate Ions on Dephosphorylation of Organo Phosphororus Ester in CTAX Micelle)

  • 김정배;김학윤
    • 한국환경과학회지
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    • 제14권2호
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    • pp.241-249
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    • 2005
  • This study deals with micellar effects on dephosphorylation of diphenyl-4- nitrophenylphosphate (DPNPPH), diphenyl-4-nitrophenylphosphinate (DPNPlN) and isopropylphenyl-4-nitrophenyl phosphinate (IPNPlN) mediated by $OH^\Theta$ or o-iodosobenzoate ion $(IB^\Theta)$ in aqueous and CTAX solutions. Dephosphorylation of DPNPPH, DPNPIN and IPNPIN mediated by $OH^\Theta$ or o-iodosobenzoate ion $(IB^\Theta)$ is relatively slow in aqueous solution. The reactions in CTAX micellar solutions are, however, much accelerated because CTAX micelles can accommodate both reactants in their Stem layer in which they can easily react, while hydrophilic $OH^\Theta\;(or\;IB^\Theta)$ and hydrophobic substrates are not mixed in water. Even though the concentrations $(>10^{-3}\;M)\;of\;OH^\Theta\;(or\;IB^\Theta)$ in CTAX solutions are much larger amounts than those $(6\times10^{-6}\;M)$ of substrates, the rate constants of the dephosphorylations are largely influenced by the change of concentration of the ions, which means that the reactions are not followed by the pseudo first order kinetics. In comparison to effect of the counter ions of CTAX in the reactions, CTACI is more effective on the dephosphorylation of substrates than CTABr due to easier expelling of $Cl^\Theta$ ion by $OH^\Theta\;(or\;IB^\Theta)$ ion from the micelle, because of easier solvation of $Cl^\Theta$ ion by water molecules. The reactivity of IPNPlN with $OH^\Theta\;(or\;IB^\Theta)$ is lower than that of DPNPlN. The reason seems that the 'bulky' isopropyl group of IPNPIN hinders the attack of the nucleophiles.

계면활성제 용액속에서의 화학반응 (제 4 보) : $OH^-$ 및 o-Iodosobenzoate 이온에 의한 유기 포스피네이트의 탈인산화 반응에 미치는 CTAX 미셀의 영향 (Chemical Reactions in Surfactant Solutions (Ⅳ) : Micellar Rate Effect on Reactions of Hydroxide and o-Iodosobenzoate Ions with Organic Phosphinates)

  • 홍영석;김현묵
    • 대한화학회지
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    • 제38권10호
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    • pp.753-762
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    • 1994
  • OH-이온이나 o-iodosobenzoate 이온($IB^-$)에 의한 diphenyl- 및 isopropylphenyl-4-nitrophenylphosphinate (DPNPIN or IPNPIN)의 탈인산화반응은 비교적 느리나, CTAX 미셀용액속에서는 매우 촉진된다. 그 이유는 수용액속에서는 친수성인 $OH^-$(또는 $IB^-$)와 소수성인 포스피네이트가 서로 섞일 수 없으나 CTABr 및 CTACl 미셀은 이들 양쪽을 모두 수용할 수 있기 때문이다. 이때 유사 1차속도상수는 미셀의 농도가 증가함에 따라 증가하다가 최대에 이르고 다시 서서히 감소한다. 또한, 기질인 포스피네이트들의 농도가 증가함에 따라 증가하다가 최대에 이르고 다시 서서히 감소한다. 또한, 기질인 포스피네이트들의 농도($6.0{\times}10^{-6}$ M)보다 $OH^-$ 또는 $IB^-$ 등의 친핵체의 농도(> $10^{-3}$ M)가 과량으로 사용되었기 때문에 이들 반응은 유사 1차 반응속도식(kinetics)을 따를 것으로 예상하였으나, 실제 이들 친핵체의 농도의 영향을 받고 있다. 한편, CTABr 용액속에서의 반응과 CTACl 용액속에서의 반응은 같은 모양으로 진행되나, CTACl 용액속에서의 반응이 훨씬 빠르다. 이것은 다 같은 $CTA^+$ 양이온성 미셀이지만, 반대 이온(counter ion)인 $Br^-$$Cl^-$$OH^-$(또는 $IB^-$)와의 교환 능력의 차이 때문이다. 즉 수화 능력이 큰 $Cl^-$이온이 물층으로 더 쉽게 이행되고, 그로 말미암아 더 많은 $OH^-$(또는 $IB^-$)가 미셀속으로 들어가게 되어 포스피네이트와 더 많이 반응하게 된다. 두 포스포네이트의 탈인산화반응은 DPNPIN이 IPNPIN보다 훨씬 빠르다. 이것은 phenyl기가 덩치가 큰 isopropyl기보다 반응 전이상태에서 입체장해를 덜 주기 때문인 것으로 판단된다. 그리고 IPNPIN의 탈인산화반응에서 $IB^-$이온이 일반염기로 작용하는지 친핵체로 작용하는지를 밝히고자 반응 생성물인 p-nitrophenoxide 이온을 외부에서 가해서 반응속도의 감소 효과를 관찰함으로써, 이 반응이 친핵체의 공격에 의해 진행됨을 밝혔다. 이와 같은 함정 실험(trapping experiment)은 매우 느린 수용액에서의 반응에 비해, 본 연구에서와 같이, 미셀 용액속에서의 빠른 반응에 더욱 효과적이라 판단된다. 아울러 반응속도론적 동위원소효과(kinetic isotope effect)도 관찰하였다.

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음이온 및 양이온 미셀 용액에서 친핵체에 의한 유기 포스피네이트의 탈인산화반응 (Dephosphorylation of an Organic Phosphinate by Nucleophile in Anionic and Cationic Micellar Solutions)

  • 김정배
    • 한국환경과학회지
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    • 제15권5호
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    • pp.485-491
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    • 2006
  • In the aqueous solutions the dephosphorylations of isopropyl phenyl-4-nitrophenyl phosphinate(IPNPIN) mediated by hydroxide$(OH^{\theta})$ and o-iodosobenzoate$(IB^{\theta})$ ions ate relatively slow, because of hydrophobicity of the substrate, and however it appears that $OH^{\theta}$ is inherently better nucleophile than $IB^{\theta}$, which is more soft ion. On the other hand, in cetyltrimetyiammonium bromide(CTABr) solutions which contain cationic micelles, the dephosphorylations of IPNPIN mediated by $OH^{\theta}$ or $IB^{\theta}$ ate very accelerated to 120 or 100,000 times as compared with those in the aqueous solutions. The values of pseudo first order rate constants reach a maximum with increasing. Such rate maxima are typical of micellar catalysed bimolecular reactions and the rise in rate constant followed by a gradual decrese is characteristic of reactions of hydrophobic substrates. In the cationic micellar solutions of CTABr, $IB^{\theta}$ accelerates the reactions much more than that $OH^{\theta}$ does. The reason seems that $IB^{\theta}$ which is more hydrophobic and soft ion than $OH^{\theta}$ is more easily moved into the Stern layer of the CTABr micelles than $OH^{\theta}$. In the anionic micellar solutions of sodium dodecyl sulfate(SDS), the dephosrhorylations of IPNPIN ate slower than those in aqeous solutions. It means that $OH^{\theta}$ or $IB^{\theta}$ cannot easily move and approach to the Stern layer of the micelle in which almost all the hydrophobic substrate are located and which has a negative circumstance.