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Amphiphilic Organic–Inorganic Hybrid Zeotype Aluminosilicate like a Nanoporous Crystallized Langmuir–Blodgett Film
Authors:Dr Takuji Ikeda  Dr Norihito Hiyoshi  Dr Shun‐ichi Matsuura  Dr Tetsuya Kodaira  Takuma Nakaoka  Ami Irisa  Miki Kawano  Dr Katsutoshi Yamamoto
Institution:1. Research Institute for Chemical Process Technology, National Institute of Advanced Industrial Science and Technology, 4‐2‐1 Nigatake, Miyagino‐ku, Sendai 983‐8551 (Japan);2. Research Institute for Chemical Process Technology, National Institute of Advanced Industrial Science and Technology, 1‐1‐1 Higashi, Tsukuba 305‐8565 (Japan);3. Faculty of Environmental Engineering, The University of Kitakyushu, 1‐1 Hibikino, Wakamatsu‐ku, Kitakyushu 808‐0135 (Japan)
Abstract:A new organic–inorganic hybrid zeotype compound with amphiphilic one‐dimensional nanopore and aluminosilicate composition was developed. The framework structure is composed of double aluminosilicate layers and 12‐ring nanopores; a hydrophilic layer pillared by Q2 silicon atom species and a lipophilic layer pillared by phenylene groups are alternately stacked, and 12‐ring nanopores perpendicularly penetrate the layers. The framework topology looks similar to that of an AFI‐type zeolite but possesses a quasi‐multidimensional pore structure consisting of a 12‐ring channel and intersecting small pores equivalent to 8‐rings. The hybrid material with alternately laminated lipophilic and hydrophilic nanospaces can be assumed as a crystallized Langmuir–Blodgett film. It demonstrates microporous adsorption for both hydrophilic and lipophilic adsorptives, and its outer surface tightly adsorbs lysozyme whose molecular size is much larger than its micropore opening. Our results suggest the possibility of designing porous adsorbent with high amphipathicity.
Keywords:amphiphiles  Langmuir–  Blodgett films  microporous materials  organic–  inorganic hybrid composites  zeolite analogues
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