首页> 外文期刊>International Journal of Nanodimension >Investigation of molecular motion of Cl-adamantane in the nanoprous zeolite by 13C NMR dipolar dephasing and variable contact time measurements
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Investigation of molecular motion of Cl-adamantane in the nanoprous zeolite by 13C NMR dipolar dephasing and variable contact time measurements

机译:通过13 C NMR偶极相移和可变接触时间测量研究Cl-金刚烷在纳米级沸石中的分子运动

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Dipolar-dephasing method provides some information about the strength of dipolar coupling in solids. Dipolar dephasing technique measures the time for a polarized carbon nucleus to lose its magnetization once the proton locking field is terminated. The dynamics of guest molecules adsorbed within the cavities and channels of nonporouszeolite strongly depend on the structure and chemical composition of the nonporouszeolite. In this work solid-state 13C NMR spectroscopy and dipolar dephasing technique were applied to determine the extent of motion 1-Chloroadamantaneloaded in nonporouszeolite-Y. Loading of 1-Chloroadamantane into the supercages of the zeolite-Y (with R=100 and R=2.35, R=Si/Al) was carried out by a vapor phase impregnationand solution impregnation methods. The accuracy of dipolar dephasing method was first investigated with the aid of pure 1-Chloroadamantaneto determine the degree of motion in the nonporousof zeolite-Y. Results indicated that the Cd signal of the 1-Chloroadamantanein the nonporous zeolite-Y decays faster than that the Cb and Cg, demonstrating that dipolar interaction for this carbon (Cd) is stronger. However, the rate of signal decay Cd for the 1-Chloroadamantaneloaded in zeolite -Y (R=2.35) is less than that loaded in zeolite-Y (R=100).
机译:偶极相移方法提供了有关固体中偶极耦合强度的一些信息。偶极相移技术测量一旦质子锁定场终止,极化碳核失去磁化的时间。吸附在无孔沸石的腔和通道内的客体分子的动力学强烈取决于无孔沸石的结构和化学组成。在这项工作中,应用固态13C NMR光谱和偶极相移技术来确定1-氯金刚烷在无孔沸石Y中的运动程度。通过气相浸渍和溶液浸渍方法将1-氯金刚烷加载到沸石Y的超笼中(R = 100,R = 2.35,R = Si / Al)。首先借助纯1-氯金刚烷研究偶极相移方法的准确性,以确定Y型无孔沸石中的运动程度。结果表明,无孔沸石-Y中1-氯金刚烷的Cd信号衰减快于Cb和Cg,表明该碳(Cd)的偶极相互作用更强。然而,负载在沸石-Y中的1-氯金刚烷的信号衰减率Cd(R = 2.35)小于负载在沸石-Y中的信号衰减Cd(R = 100)。

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