Carbon nitride (g-C N ) nanostructure rebuilding is an effective means to modify its photocatalytic properties, especially the hollow micron-nanostructure. The increased scattering in the body effectively improves the light utilization efficiency and improves catalytic properties. In this work, fusiform-shaped g-C N capsules are created by controlling the nucleation kinetics of supramolecular assemblies. The fusiform-shaped capsule micron-nanostructure is synthesized with ultrathin wall thickness and adjusted carbon/nitride ratios which decrease the recombination rate of photo-generated carriers. The hollow nanostructure and relatively higher specific surface area of the fusiform-shaped capsule effectively enhance light scattering inside body and lead to an enhanced carrier utilization efficiency. Moreover, the decrease of bandgap and relatively negative conduction band position affect the response of hollow fusiform-shaped g-C N capsules (Hf-g-C N ) in visible light region and improve the photo-reducing performance. In term of H evolution property, Hf-g-C N has been improved to 7052 µmol g h , which is 10.9 times higher compared with bulk structure. More importantly, Hf-g-C N can produce CH at the rate of 1.63 µmol g h without help of co-catalyst and hole sacrificial agent in the photocatalytic reduction reaction of CO to CH . At same time, the selective photocatalytic reduction of CO is another advantage of Hf-g-C N .
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October 2020
Fuels and Energy Technology Institute and Department of Chemical Engineering, Curtin University, Perth, WA6845, Australia.
Carbon nitride (g-C N ) nanostructure rebuilding is an effective means to modify its photocatalytic properties, especially the hollow micron-nanostructure. The increased scattering in the body effectively improves the light utilization efficiency and improves catalytic properties. In this work, fusiform-shaped g-C N capsules are created by controlling the nucleation kinetics of supramolecular assemblies.
View Article and Find Full Text PDFInt J Syst Evol Microbiol
June 2019
5C4-101, Nitrogen Fixation Laboratory, Qi Institute,555 Chuangye Road, Dayun Town, Jiashan County, Jiaxing 314000, Zhejiang Province, PR China.
A motile, Gram-stain-negative, fusiform-shaped bacterium, designated strain T3, was isolated from rhizosphere soil of Alhagi sparsifolia, collected from Xinjiang, PR China. Strain T3 grew at 15-42 °C, pH 4-9 and 1-6 % (w/v) NaCl concentrations. Phylogenetic analysis based on 16S rRNA gene sequences indicated that strain T3 belonged to the genus Pseudomonas and showed highest similarity of 98.
View Article and Find Full Text PDFNew Microbes New Infect
March 2017
Aix-Marseille Université, URMITE, UM63, CNRS7278, IRD198, INSERM 1095, Institut Hospitalo-Universitaire Méditerranée-Infection, Faculté de médecine, Marseille, France.
The strain Marseille-P2749 (= CSUR P2749 = DSM 103085) was isolated as part of culturomics study from a liquid duodenum sample from a French man. Bacterial cells were Gram-negative bacilli, fusiform shaped and non-spore forming, and they grew in microaerophilic and anaerobic atmosphere. Its genome is 1 809 169 bp long and contains 1646 protein-coding genes.
View Article and Find Full Text PDFInt J Syst Evol Microbiol
February 2014
School of Civil and Environmental Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Republic of Korea.
A Gram-stain-negative, fusiform-shaped, facultatively anaerobic bacterial strain, designated EBTL04(T), was isolated from activated sludge using algal metabolites and taxonomically characterized through polyphasic investigation. Phylogenetic analysis based on the 16S rRNA gene sequence showed that strain EBTL04(T) belongs to the family Verrucomicrobiaceae, class Verrucomicrobiae, and is closely related to Prosthecobacter dejongeii DSM 12251(T) (98.6 % sequence similarity), Prosthecobacter fusiformis ATCC 25309(T) (97.
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