2012 ©
             Publication
Journal Publication
Title of Article Thermally Induced Single-Crystal-to-Single-Crystal Transformation and Heterogeneous Catalysts for Epoxidation Reaction of Co(II) Based Metal−Organic Frameworks Containing 1,4-Phenylenediacetic Acid 
Date of Acceptance 3 March 2017 
Journal
     Title of Journal CRYSTAL GROWTH & DESIGN 
     Standard SCOPUS 
     Institute of Journal ACS Publications 
     ISBN/ISSN  
     Volume 17 
     Issue
     Month March
     Year of Publication 2017 
     Page 1824-1835 
     Abstract Four new metal−organic frameworks (MOFs) based on 1,4-phenylenediacetic acid (1,4-H2phda), [Co(1,4-phda)(4,4′-bpa)] (1), [Co(1,4-phda)(4,4′-bpp)] (2), [Co(1,4-phda)(4,4′-bpa)(H2O)2] (3), and [Co(1,4-phda)- (4,4′-bpa)] (3a) (4,4′-bpa = 1,2-bis(4-pyridyl)ethane and 4,4′-bpp = 1,3-bis(4-pyridyl)propane) were successfully synthesized. The various synthetic methods play an important role in the formation of diverse structural frameworks. Compound 1 shows a 3D framework, while 2, 3, and 3a exhibit 2D layered MOFs with different architectures. The irreversible thermally induced single-crystal-to-single-crystal transformation with chromotropism from 3 to 3a was observed, which was established by the breakage and reformation of coordination bonds around Co(II) centers. The orientation of coordinated 4,4′-bpa ligand and conformation of 1,4-phda ligand play a key role on pore opening in 3 and pore closing in 3a. Furthermore, the functional properties as heterogeneous catalysts of these MOFs including epoxidation of alkenes and photocatalytic performance for MB degradation have been investigated. The heterogeneous catalytic properties of 1, 2, and 3a exhibit high catalytic activity with good catalyst stability. 
     Keyword Metal-organic framework, epoxidation of alkenes, photocatalytic, single-crystal-to-single-crystal transformation, cobalt(II), 1,4-phenylenediacetic acid, heterogeneous catalysis 
Author
557020077-3 Miss JINTANA OTHONG [Main Author]
Science Doctoral Degree

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