Literature DB >> 21161555

Cooperative effect of water molecules in the self-catalyzed neutral hydrolysis of isocyanic acid: a comprehensive theoretical study.

Xi-Guang Wei1, Xiao-Ming Sun, Xiao-Peng Wu, Song Geng, Yi Ren, Ning-Bew Wong, Wai-Kee Li.   

Abstract

The detailed reaction mechanism for the water-assisted hydrolysis of isocyanic acid, HNCO + (n + 1) H(2)O → CO(2) + NH(3) + nH(2)O (n = 0-6), taking place in the gas phase, has been investigated. All structures were optimized and characterized at the MP2/6-31 + G level of theory, and then re-optimized at MP2/6-311++G. The seven explicit water molecules participating in the hydrolysis can be divided into two groups, one directly involved in the proton relay, and the other located in the vicinity of the substrate playing the cooperative role by engaging in hydrogen-bonding to HN = C = O. Two possible reaction pathways, the addition of water molecule across the C = N bond or across the C = O bond, are discussed, and the former is proved to be more favorable energetically. Our calculations suggest that, in the most kinetically favorable pathway for the titled hydrolysis, three water molecules are directly participating in the hydrogen transfer via an eight-membered cyclic transition state, while the other four water molecules catalyze the hydrolysis of HN = C = O by forming three eight-membered cooperative loops near the substrate. This strain-free hydrogen-bond network leads to the best estimated rate-determining activation energy of 24.9 kJ mol(-1) at 600 K, in excellent agreement with the gas-phase kinetic experimental result, 25.8 kJ mol(-1).

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Year:  2010        PMID: 21161555     DOI: 10.1007/s00894-010-0917-z

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  17 in total

1.  The effect of cooperative hydrogen bonding on the OH stretching-band shift for water clusters studied by matrix-isolation infrared spectroscopy and density functional theory.

Authors:  Keiichi Ohno; Mari Okimura; Nobuyuki Akai; Yukiteru Katsumoto
Journal:  Phys Chem Chem Phys       Date:  2005-07-14       Impact factor: 3.676

2.  Hydrogen bonded OH-stretching vibration in the water dimer.

Authors:  Daniel P Schofield; Joseph R Lane; Henrik G Kjaergaard
Journal:  J Phys Chem A       Date:  2007-02-01       Impact factor: 2.781

3.  Infrared spectrum of solid isocyanic acid (HNCO): vibrational assignments and integrated band intensities.

Authors:  M S Lowenthal; R K Khanna; Marla H Moore
Journal:  Spectrochim Acta A Mol Biomol Spectrosc       Date:  2002-01-01       Impact factor: 4.098

4.  Experimental and Theoretical Evidence for a Concerted Catalysis by Water Clusters in the Hydrolysis of Isocyanates.

Authors:  Greet Raspoet; Minh Tho Nguyen; Michelle McGarraghy; Anthony Frank Hegarty
Journal:  J Org Chem       Date:  1998-10-02       Impact factor: 4.354

5.  Mechanism of the hydration of carbon dioxide: direct participation of H2O versus microsolvation.

Authors:  Minh Tho Nguyen; Myrna H Matus; Virgil E Jackson; Thi Ngan Vu; James R Rustad; David A Dixon
Journal:  J Phys Chem A       Date:  2008-09-25       Impact factor: 2.781

6.  Dissociation of multiply ionized isocyanic acid through electron impact.

Authors:  Pengqian Wang; C R Vidal; Janna Geith; Thomas M Klapötke; Werner Fuss
Journal:  J Chem Phys       Date:  2004-01-01       Impact factor: 3.488

7.  Neutral hydrolyses of carbon disulfide: An ab initio study of water catalysis.

Authors:  Chao Deng; Xiao-Peng Wu; Xiao-Ming Sun; Yi Ren; Ying-Hong Sheng
Journal:  J Comput Chem       Date:  2009-01-30       Impact factor: 3.376

8.  A comprehensive theoretical study on the hydrolysis of carbonyl sulfide in the neutral water.

Authors:  Chao Deng; Qiang-Gen Li; Yi Ren; Ning-Bew Wong; San-Yan Chu; Hua-Jie Zhu
Journal:  J Comput Chem       Date:  2008-02       Impact factor: 3.376

9.  Theoretical study of the neutral hydrolysis of hydrogen isocyanate in aqueous solution via assisted-concerted mechanisms.

Authors:  S Tolosa Arroyo; A Hidalgo Garcia; J A Sansón Martín
Journal:  J Phys Chem A       Date:  2009-03-05       Impact factor: 2.781

10.  An ab initio study on the allene-isocyanic acid and ketene-vinylimine [2 + 2] cycloaddition reaction paths.

Authors:  Joanna E Rode; Jan Cz Dobrowolski
Journal:  J Phys Chem A       Date:  2006-03-16       Impact factor: 2.781

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  1 in total

1.  Theoretical investigations on the synthesis mechanism of cyanuric acid from NH₃ and CO₂.

Authors:  Xueli Cheng; Yanyun Zhao; Weiqun Zhu; Yongjun Liu
Journal:  J Mol Model       Date:  2013-11       Impact factor: 1.810

  1 in total

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