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Stacking Structure of Confined 1‐Butanol in SBA‐15 Investigated by Solid‐State NMR Spectroscopy
Authors:Yun‐Chih Lin Dr  Hung‐Lung Chou Dr  Loka Subramanyam Sarma Dr  Bing‐Joe Hwang Prof
Institution:1. Nanoelectrochemistry Laboratory, Department of Chemical Engineering, National Taiwan University of Science and Technology, #43, Sec.4, Keelung Rd., Taipei 106 (Taiwan), Fax: (+886)?2‐27376644;2. National Synchrotron Radiation Research Center, #101 Hsin‐Ann Rd., Hsinchu Science Park, Hsinchu 30076 (Taiwan)
Abstract:Understanding the complex thermodynamic behavior of confined amphiphilic molecules in biological or mesoporous hosts requires detailed knowledge of the stacking structures. Here, we present detailed solid‐state NMR spectroscopic investigations on 1‐butanol molecules confined in the hydrophilic mesoporous SBA‐15 host. A range of NMR spectroscopic measurements comprising of 1H spin–lattice (T1), spin–spin (T2) relaxation, 13C cross‐polarization (CP), and 1H,1H two‐dimensional nuclear Overhauser enhancement spectroscopy (1H,1H 2D NOESY) with the magic angle spinning (MAS) technique as well as static wide‐line 2H NMR spectra have been used to investigate the dynamics and to observe the stacking structure of confined 1‐butanol in SBA‐15. The results suggest that not only the molecular reorientation but also the exchange motions of confined molecules of 1‐butanol are extremely restricted in the confined space of the SBA‐15 pores. The dynamics of the confined molecules of 1‐butanol imply that the 1H,1H 2D NOESY should be an appropriate technique to observe the stacking structure of confined amphiphilc molecules. This study is the first to observe that a significant part of confined 1‐butanol molecules are orientated as tilted bilayered structures on the surface of the host SBA‐15 pores in a time‐average state by solid‐state NMR spectroscopy with the 1H,1H 2D NOESY technique.
Keywords:amphiphiles  bilayered structure  mesoporous materials  solid‐state NMR spectroscopy
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