LICP OpenIR  > 固体润滑国家重点实验室(LSL)
Catalytic oxidation properties of 3D printed ceramics with Bouligand structures
Department固体润滑国家重点实验室(LSL)
Xin Xu; Bo He; Yixian Wang; Yuntai Xi; Desheng Liu; Zhongying Ji; Lichun Bai; Fang Dong; Zhibin Lu; Xiaolong Wang
The second department216计算摩擦学课题组
2023-08-16
Source PublicationChemical Engineering Journal
Issue474Pages:145504
Abstract

Bouligand structure composed of twist-aligned nanoffber lamina as one typical biological skeleton is widely presented in various organism. Inspired by this, a strategy was proposed by coupling a novel method of 3D printing with surface modiffcation, attempting to build the programmable helicoidal catalytic ceramics and then improving the catalytic performance. In this work, the biomimetic Bouligand architectures with different pitch angles (α), where the pitch angle is deffned as the rotational angle of two adjacent twisted layer fflaments, were built. Typically, the construction of bioinspired helicoidal catalytic ceramics with Bouligand structure can be divided into two steps, including the 3D printing of unidirectionally aligning ceramic fflaments helical stacked helicoidal Al2O3 ceramics, and the surface functionalization of platinum (Pt) catalysts. To this end, we designed and fabricated several helicoidal catalytic ceramics with pitch angles (α) of 30◦, 45◦, 60◦, and 90◦ for exploring the catalytic performances of toluene vapor, and the acquired corresponding toluene conversions at 200 ◦C were 92.51%, 92.46%, 90.67%, and 78.51%, respectively. Furthermore, as an optimal twisted helicoidal catalytic ceramic device rotated from 0◦ to 180◦ with a pitch angle of 30◦, the conversion of toluene at 200 ◦C can reach 95.52%, and exhibited excellent catalytic activity, favorable repeatability, and superior water resistance in the process of toluene oxidation. Thus, the prepared helicoidal catalytic ceramic was employed to transform the airffow direction, thereby prolonging the contact time between the gas and the catalyst for improving the catalytic efffciency. Overall, the simple yet efffcient method for achieving tailored catalytic performance by controlling the pitch angles, dimensions, as well as the structural motifs, that can provide valuable ideas and revelations for developing light-structure catalytic materials in the future.

KeywordBioinspired structural design 3D printing Bouligand structure Helicoidal catalytic ceramics VOCs catalytic oxidation
Indexed BySCI
If15.1
Language英语
compositor第一作者单位
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/30637
Collection固体润滑国家重点实验室(LSL)
Corresponding AuthorZhongying Ji; Xiaolong Wang
Affiliation1.State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences
2.School of Chemistry and Chemical Engineering/State Key Laboratory Incubation Base for Green Processing of Chemical Engineering, Shihezi University
3.Shandong Laboratory of Advanced Materials and Green Manufacturing at Yantai, Yantai Zhongke Research Institute of Advanced Materials and Green Chemical Engineering
4.State Key Laboratory for Oxo Synthesis and Selective Oxidation, National Engineering Research Center for Fine Petrochemical Intermediates, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences
5.Key Laboratory of Trafffc Safety on Track (Central South University), Ministry of Education, School of Trafffc & Transportation Engineering, Central South University
Recommended Citation
GB/T 7714
Xin Xu,Bo He,Yixian Wang,et al. Catalytic oxidation properties of 3D printed ceramics with Bouligand structures[J]. Chemical Engineering Journal,2023(474):145504.
APA Xin Xu.,Bo He.,Yixian Wang.,Yuntai Xi.,Desheng Liu.,...&Xiaolong Wang.(2023).Catalytic oxidation properties of 3D printed ceramics with Bouligand structures.Chemical Engineering Journal(474),145504.
MLA Xin Xu,et al."Catalytic oxidation properties of 3D printed ceramics with Bouligand structures".Chemical Engineering Journal .474(2023):145504.
Files in This Item:
File Name/Size DocType Version Access License
luwen_3.pdf(13741KB)期刊论文作者接受稿开放获取CC BY-NC-SAView Application Full Text
Related Services
Recommend this item
Bookmark
Usage statistics
Export to Endnote
Google Scholar
Similar articles in Google Scholar
[Xin Xu]'s Articles
[Bo He]'s Articles
[Yixian Wang]'s Articles
Baidu academic
Similar articles in Baidu academic
[Xin Xu]'s Articles
[Bo He]'s Articles
[Yixian Wang]'s Articles
Bing Scholar
Similar articles in Bing Scholar
[Xin Xu]'s Articles
[Bo He]'s Articles
[Yixian Wang]'s Articles
Terms of Use
No data!
Social Bookmark/Share
File name: luwen_3.pdf
Format: Adobe PDF
All comments (0)
No comment.
 

Items in the repository are protected by copyright, with all rights reserved, unless otherwise indicated.