[B, Al]-ZSM-5沸石中硼-有机模板相互作用的固体核磁共振光谱分析

Yongxiang Wang , Shuangqin Zeng , Pengfei Wang , Mingji Zheng , Weidong Huang , Yueying Chu , Ningdong Feng , Guodong Qi , Qiang Wang , Jun Xu , Feng Deng
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引用次数: 0

摘要

有机结构导向剂(OSDAs),如四丙基铵(TPA)阳离子,是形成沸石框架的关键模板。这些有机分子与无机分子相互作用,引导沸石结构的组装。本文研究了[B, Al]-ZSM-5沸石结晶过程中硼种与TPA阳离子之间的复杂相互作用。二维(2D) 11B-{1H}交叉极化异核相关(CP-HECTOR) NMR实验阐明了B(IV)-1和B(IV)-2两种硼之间的不同相互作用以及tpa的丙基链。无定形的B(IV)-1物质对靠近osda的氮阳离子中心表现出强烈的偏好,而骨架B(IV)-2物质与位于离阳离子中心较远的成分结合。此外,基于13C-{11B}对称性的共振-回波饱和-脉冲双共振(S-RESPDOR)实验表明,框架硼优先占据MFI结构的直通道,这可以通过它们与TPA分子上特定甲基的相互作用来证明。这一观察结果为硼基沸石的结晶机制提供了有价值的见解,表明OSDA分子的构象和取向在确定硼原子在沸石框架内的位置方面起着关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unraveling boron-organic template interactions in [B, Al]-ZSM-5 zeolite using solid-state NMR spectroscopy
Organic structure directing agents (OSDAs), such as tetrapropylammonium (TPA) cations, serve as crucial templates for the formation of zeolite frameworks. These organic molecules interact with inorganic species, guiding the assembly of the zeolite structure. In this study, we investigate the complex interplay between boron species and TPA cations during the crystallization of [B, Al]-ZSM-5 zeolites. Two-dimensional(2D) 11B-{1H} cross-polarization heteronuclear correlation (CP-HECTOR) NMR experiments elucidate distinct interactions between two boron species, B(IV)-1 and B(IV)-2, and the propyl chain of the TPAs. Amorphous B(IV)-1 species exhibit a strong preference for proximity to the nitrogen cation center of the OSDAs, while framework B(IV)-2 species engage with components situated at greater distances from the cation center. Moreover, 13C-{11B} symmetry-based resonance-echo saturation-pulse double-resonance (S-RESPDOR) experiments revealed that framework boron species preferentially occupy the straight channels of the MFI structure, as evidenced by their interaction with specific methyl groups on the TPA molecules. This observation provides valuable insights into the crystallization mechanism of boron-based zeolites, suggesting that the conformation and orientation of the OSDA molecules play a critical role in determining the location of boron atoms within the zeolite framework.
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来源期刊
Magnetic Resonance Letters
Magnetic Resonance Letters Analytical Chemistry, Spectroscopy, Radiology and Imaging, Biochemistry, Genetics and Molecular Biology (General)
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