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김진현

Kim, Jinhyun
Sustainable Energy Materials Laboratory
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Natural pollen exine-templated synthesis of photocatalytic metal oxides with high surface area and oxygen vacancies

Author(s)
Shin, JeehoonHutomo, Calvin AndreasKim, JinhyunJang, JinhyeongPark, Chan Beum
Issued Date
2022-10
DOI
10.1016/j.apsusc.2022.154064
URI
https://scholarworks.unist.ac.kr/handle/201301/84433
Citation
APPLIED SURFACE SCIENCE, v.599, pp.154064
Abstract
Pollen grains in nature possess highly hierarchical structure been created through evolution process for over millions of years. Here, we report eco-friendly synthesis of highly photocatalytic metal oxides (ZnO, CeO2, and Fe2O3) using sporopollenin exine capsules (SECs), the hard structure of pollen, as a template. We generate carboxylate groups on the SECs to induce electrostatic interactions between the metal ions in the precursor solution and the surface of the SECs. The pollen-templated metal oxide structure is synthesized by aggregating metal oxide nanoparticles with the size of 10-20 nm on the micro-sized SECs framework, which have maintained unique morphology of the pollen. These metal oxides display excellent performance of organic pollutants degradation under visible light, owing to high surface area and oxygen vacancies which allow higher reaction rates and promote separation of photogenerated electron-hole pairs.
Publisher
ELSEVIER
ISSN
0169-4332
Keyword (Author)
PollenSporopollenin exine capsulesPhotocatalytic metal oxidesHierarchical structures
Keyword
ELECTRON-PARAMAGNETIC-RESONANCEBIOTEMPLATED SYNTHESISINTERSTITIAL OXYGENHOLLOW MICROSPHERESMETHYLENE-BLUELOTUS POLLENZINC-OXIDEZNOFABRICATIONDEFECTS

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