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一种新颖且简便的方法来制备具有增强光催化性能的纳米管内生长NiO纳米线结构的纳米纤维。

A novel and facile approach to obtain NiO nanowire-in-nanotube structured nanofibers with enhanced photocatalysis.

作者信息

Wang Yue, Li Dan, Ma Qianli, Tian Jiao, Song Yan, Xi Xue, Dong Xiangting, Yu Wensheng, Wang Jinxian, Liu Guixia

机构信息

Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province, Changchun University of Science and Technology Changchun 130022 China

出版信息

RSC Adv. 2018 Mar 20;8(20):11051-11060. doi: 10.1039/c8ra01211c. eCollection 2018 Mar 16.

Abstract

NiO nanowire-in-nanotube structured nanofibers were easily and directly fabricated one-pot uniaxial electrospinning followed by calcination process for the first time. Firstly, Ni(CHCOO)/PVP composite nanofibers were prepared by a conventional electrospinning method, and then NiO nanowire-in-nanotube structured nanofibers were successfully synthesized by two-stage calcination procedure of Ni(CHCOO)/PVP composite nanofibers which was determined to be the key process for preparing NiO nanowire-in-nanotube structured nanofibers. The NiO nanowire-in-nanotube structured nanofibers have pure cubic phase structure with space group of , and the outer diameter and wall thickness of nanotubes and nanowire diameter are 130 ± 0.99 nm, 30 nm and 40 nm, respectively. Preliminarily, it is satisfactorily found that NiO nanowire-in-nanotube structured nanofibers used as photocatalyst for water splitting exhibit higher H evolution rate of 622 μmol h than counterpart NiO hollow nanofibers of 472 μmol h owing to its novel nanostructure. The possible formation mechanism of NiO nanowire-in-nanotube structured nanofibers is proposed. To evaluate the universality of this novel preparative technique, taking CoO as an example, it is found that CoO nanowire-in-nanotube structured nanofibers are also successfully fabricated this novel method. The special nanowire-in-nanotube structure of the one-dimensional nanomaterials makes them have promising applications in catalysis, lithium-ion battery, drug delivery, . This manufacturing strategy has some advantages over other methods to form nanowire-in-nanotube structured nanofibers, such as easy, highly efficient and cost effective. The design idea and synthetic technique provide a novel perspective to create other nanowire-in-nanotube structured nanomaterials.

摘要

首次通过一锅法单轴静电纺丝并随后进行煅烧过程,轻松直接地制备了纳米管内生长镍氧化物纳米线结构的纳米纤维。首先,采用传统静电纺丝方法制备了Ni(CHCOO)/PVP复合纳米纤维,然后通过Ni(CHCOO)/PVP复合纳米纤维的两步煅烧程序成功合成了纳米管内生长镍氧化物纳米线结构的纳米纤维,这被确定为制备纳米管内生长镍氧化物纳米线结构纳米纤维的关键过程。纳米管内生长镍氧化物纳米线结构的纳米纤维具有纯立方相结构,空间群为 ,纳米管的外径和壁厚以及纳米线直径分别为130±0.99 nm、30 nm和40 nm。初步令人满意地发现,用作光催化水分解的纳米管内生长镍氧化物纳米线结构的纳米纤维,由于其新颖的纳米结构,其析氢速率为622 μmol h,高于对应的472 μmol h的NiO中空纳米纤维。提出了纳米管内生长镍氧化物纳米线结构纳米纤维的可能形成机制。为了评估这种新型制备技术的通用性,以CoO为例,发现通过这种新方法也成功制备了纳米管内生长CoO纳米线结构的纳米纤维。一维纳米材料的特殊纳米管内生长纳米线结构使其在催化、锂离子电池、药物递送等方面具有广阔的应用前景。这种制造策略相对于其他形成纳米管内生长纳米线结构纳米纤维的方法具有一些优势,如简便、高效且成本效益高。该设计理念和合成技术为制备其他纳米管内生长纳米线结构的纳米材料提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58f7/9078954/b1186f3eb567/c8ra01211c-f2.jpg

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