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具有短b轴厚度的钛硅分子筛纳米片的可控合成及其在氧化脱硫中的应用

Controllable Synthesis of Titanium Silicon Molecular Zeolite Nanosheet with Short b-Axis Thickness and Application in Oxidative Desulfurization.

作者信息

Ren Tieqiang, Wang Yujia, Wang Lulu, Liang Lisheng, Kong Xianming, Wang Haiyan

机构信息

College of Chemistry and Chemical Engineering, China University of Petroleum (East China), Qingdao 266580, China.

School of Petrochemical Engineering, Liaoning Petrochemical University, Fushun 113001, China.

出版信息

Nanomaterials (Basel). 2024 May 29;14(11):953. doi: 10.3390/nano14110953.

Abstract

Titanium silicon molecular zeolite (TS-1) plays an important role in catalytic reactions due to its unique nanostructure. The straight channel on TS-1 was parallel to the orientation of the short b-axis and directly exposed to the aperture of the 10-member ring with a diameter of 0.54 nm × 0.56 nm. This structure could effectively reduce the diffuse restriction of bulk organic compounds during the oxidative desulfurization process. As a kind of cationic polymer electrolyte, polydimethyldiallyl ammonium chloride (PDDA) contains continuous [CHNCl] chain segments, in which the Cl could function as an effective structure-directing agent in the synthesis of nanomaterials. The chain of PDDA could adequately interact with the [0 1 0] plane in the preparation process of zeolite, and then the TS-1 nanosheet with short b-axis thickness (6 nm) could be obtained. The pore structure of the TS-1 nanosheet is controlled by regulating the content of PDDA. Scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), N physical adsorption analysis, infrared absorption spectrum and ultraviolet-visible spectrum were used to determine the TS-1. The thinner nanosheets exhibit excellent catalytic performance in oxidative desulfurization of dibenzothiophene (DBT), in which the removal rate could remain at 100% after three recycles. Here, the TS-1 nanosheet with short b-axis thickness has a promising future in catalytic reactions.

摘要

钛硅分子筛(TS-1)因其独特的纳米结构在催化反应中发挥着重要作用。TS-1上的直通道与短b轴的取向平行,并直接暴露于直径为0.54 nm×0.56 nm的十元环孔口。这种结构可以有效降低氧化脱硫过程中大分子有机化合物的扩散限制。作为一种阳离子聚合物电解质,聚二甲基二烯丙基氯化铵(PDDA)含有连续的[CHNCl]链段,其中Cl在纳米材料的合成中可作为有效的结构导向剂。在沸石的制备过程中,PDDA的链可以与[0 1 0]平面充分相互作用,从而获得具有短b轴厚度(6 nm)的TS-1纳米片。通过调节PDDA的含量来控制TS-1纳米片的孔结构。使用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线光电子能谱(XPS)、N物理吸附分析、红外吸收光谱和紫外可见光谱对TS-1进行表征。较薄的纳米片在二苯并噻吩(DBT)的氧化脱硫中表现出优异的催化性能,经过三次循环后去除率可保持在100%。在此,具有短b轴厚度的TS-1纳米片在催化反应中具有广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8105/11173873/715b3d2dec70/nanomaterials-14-00953-g001.jpg

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