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Zeolites featuring 14×12-ring channels with unique adsorption properties
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作者 Shiqing Li Lu Han +3 位作者 Zhonglin Zhao Hao Xu Jingang Jiang Peng Wu 《Inorganic Chemistry Frontiers》 2021年第24期5277-5285,共9页
The lamellar precursor of the FER type zeolite(PREFER)was applied to develop the interlayer expanded zeolite IEZ(interlayer-expanded zeolite)-FER(D4h)with extra-large pores through hydrothermal acid treatment-assisted... The lamellar precursor of the FER type zeolite(PREFER)was applied to develop the interlayer expanded zeolite IEZ(interlayer-expanded zeolite)-FER(D4h)with extra-large pores through hydrothermal acid treatment-assisted molecular alkoxysilylation,using 1,3,5,7-tetramethyl cyclotetrasiloxane(D4h)as a silylating agent to interconnect neighboring zeolitic layers.The interlayer expanded structure was well preserved after calcination at 823 K,yielding a hydrophilic material denoted as IEZ-FER(D4h-B).The as-made IEZ-FER(D4h)exhibits expanded interlayer spacing along the a-axis.The 4-membered rings(4MR)exist in IEZ-FER(D4h)as the secondary structure building units,while the methyl groups therein attached result in the hydrophobic properties.The newly formed channel systems are composed of intersecting 14MR and 12MR pores along the[001]and[010]directions,respectively,which are larger than those of the conventional 3D FER.The powder XRD patterns determine that IEZ-FER(D4h)has a crystalline structure with the IMM2 space group and unit cell parameters of a=28.0285(39)A,b=14.0921(6)A,c=7.4395(3)A. 展开更多
关键词 interlayer expanded structure lamellar precursor hydrophilic material silylating agent molecular alkoxysilylationusing interconnect neighboring zeolitic layersthe fer type zeolite prefer interlayer expanded zeolite
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