Literature DB >> 20936796

Electrospun nanofibers of p-type NiO/n-type ZnO heterojunctions with enhanced photocatalytic activity.

Zhenyi Zhang1, Changlu Shao, Xinghua Li, Changhua Wang, Mingyi Zhang, Yichun Liu.   

Abstract

One-dimensional electrospun nanofibers of p-type NiO/n-type ZnO heterojunctions with different molar ratios of Ni to Zn were successfully synthesized using a facile electrospinning technique. X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray (EDX) spectroscopy, transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), UV-vis diffuse reflectance (DR) spectroscopy, resonant Raman spectroscopy, photoluminescence (PL) spectroscopy, and surface photovoltage spectroscopy (SPS) were used to characterize the as-synthesized nanofibers. The results indicated that the p-n heterojunctions formed between the cubic structure NiO and hexangular structure ZnO in the NiO/ZnO nanofibers. Furthermore, the photocatalytic activity of the as-electrospun NiO/ZnO nanofibers for the degradation of rhodamine B (RB) was much higher than that of electrospun NiO and ZnO nanofibers, which could be ascribed to the formation of p-n heterojunctions in the NiO/ZnO nanofibers. In particular, the p-type NiO/n-type ZnO heterojunction nanofibers with the original Ni/Zn molar ratio of 1 exhibited the best catalytic activity, which might be attributed to their high separation efficiency of photogenerated electrons and holes. Notably, the electrospun nanofibers of p-type NiO/n-type ZnO heterojunctions could be easily recycled without a decrease of the photocatalytic activity due to their one-dimensional nanostructural property.

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Year:  2010        PMID: 20936796     DOI: 10.1021/am100618h

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  19 in total

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2.  Hierarchical Sheet-on-Sheet ZnIn2S4/g-C3N4 Heterostructure with Highly Efficient Photocatalytic H2 production Based on Photoinduced Interfacial Charge Transfer.

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Journal:  Adv Sci (Weinh)       Date:  2016-09-21       Impact factor: 16.806

4.  Shaping triple-conducting semiconductor BaCo0.4Fe0.4Zr0.1Y0.1O3-δ into an electrolyte for low-temperature solid oxide fuel cells.

Authors:  Chen Xia; Youquan Mi; Baoyuan Wang; Bin Lin; Gang Chen; Bin Zhu
Journal:  Nat Commun       Date:  2019-04-12       Impact factor: 14.919

5.  Towards the Enhancement in Photocatalytic Performance of Ag3PO4 Nanoparticles through Sulfate Doping and Anchoring on Electrospun Nanofibers.

Authors:  Gopal Panthi; Kapil Raj Gyawali; Mira Park
Journal:  Nanomaterials (Basel)       Date:  2020-05-11       Impact factor: 5.076

6.  Two-Solvent Method Synthesis of NiO/ZnO Nanoparticles Embedded in Mesoporous SBA-15: Photocatalytic Properties Study.

Authors:  Peng Dai; Tao-Tao Yan; Xin-Xin Yu; Zhi-Man Bai; Ming-Zai Wu
Journal:  Nanoscale Res Lett       Date:  2016-04-27       Impact factor: 4.703

7.  Facile synthesis of a ZnO-BiOI p-n nano-heterojunction with excellent visible-light photocatalytic activity.

Authors:  Mengyuan Zhang; Jiaqian Qin; Pengfei Yu; Bing Zhang; Mingzhen Ma; Xinyu Zhang; Riping Liu
Journal:  Beilstein J Nanotechnol       Date:  2018-03-05       Impact factor: 3.649

8.  A Facile Approach for the Synthesis of Zn₂SnO₄/BiOBr Hybrid Nanocomposites with Improved Visible-Light Photocatalytic Performance.

Authors:  Tiekun Jia; Ming Liu; Dongsheng Yu; Fei Long; Shuyi Mo; Zhao Deng; Weimin Wang
Journal:  Nanomaterials (Basel)       Date:  2018-05-09       Impact factor: 5.076

9.  Fabrication of Hierarchical ZnO@NiO Core-Shell Heterostructures for Improved Photocatalytic Performance.

Authors:  Meng Ding; Hongcen Yang; Tian Yan; Chenggang Wang; Xiaolong Deng; Shouwei Zhang; Jinzhao Huang; Minghui Shao; Xijin Xu
Journal:  Nanoscale Res Lett       Date:  2018-08-30       Impact factor: 4.703

Review 10.  Recent Progress on Engineering Highly Efficient Porous Semiconductor Photocatalysts Derived from Metal-Organic Frameworks.

Authors:  Wenwen Zhan; Liming Sun; Xiguang Han
Journal:  Nanomicro Lett       Date:  2019-01-08
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