Bioinspired hollow and hierarchically porous MOX(M =Ti, Si)/carbon microellipsoids supported with Fe2O3 for heterogenous photochemical oxidation
发表时间:2019-03-12
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- 论文类型:
- 期刊论文
- 第一作者:
- Qin, Lei
- 通讯作者:
- Zhang, GL (reprint author), Zhejiang Univ Technol, State Key Lab Breeding Base Green Chem Synth Tech, Inst Ocean & Environm Chem Engn, Hangzhou 310014, Zhejiang, Peoples R China.
- 合写作者:
- Liu, Minmin,Wu, Yujiao,Xu, Zehai,Guo, Xinwen,Zhang, Guoliang
- 发表时间:
- 2016-10-05
- 发表刊物:
- APPLIED CATALYSIS B-ENVIRONMENTAL
- 收录刊物:
- SCIE、EI、Scopus
- 文献类型:
- J
- 卷号:
- 194
- 页面范围:
- 50-60
- ISSN号:
- 0926-3373
- 关键字:
- MOx (M = Ti, Si)/carbon microellipsoids; Biotemplating; Surface sol-gel coating; Fe2O3 nanoparticles; Photochemical oxidation
- 摘要:
- Porous carbon materials as a class of highly promising functional materials have attracted widespread interests. However, rational design and synthesis of carbon supported catalysts for long-term use still remains a big challenge. Herein, a facile surface sol-gel coating method via biotemplating technique was first employed to prepare hollow and hierarchically porous MOX(M =Ti, Si)/carbon microellipsoids with immobilized Fe2O3 NPs in pores. The easily-reached and carbon-rich pollen was chosen to play duple roles as both template and carbon source. The obtained natural carbon materials acted as trapping centers for photo-induced electrons and effectively improved visible-light photocatalytic activity and stability. By using this method, we can not only fabricate very active and reusable heterogenous catalysts without any additional surfactants, but also obviously reduce the fabrication time, dosage of chemicals and thickness of inorganic colloids. Since the bioinspired structure can provide high surface area and multiple pore size distribution for NPs to homogeneously disperse on the wall of carbon-based composites, the approach can be applied more generally to various biomaterials. (C) 2016 Elsevier B.V. All rights reserved.
- 是否译文:
- 否