首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >P-Functionalized and O-deficient TiOn/VOm nanoparticles grown on Ni foam as an electrode for supercapacitors: epitaxial grown heterojunction and visible-light-driven photoresponse
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P-Functionalized and O-deficient TiOn/VOm nanoparticles grown on Ni foam as an electrode for supercapacitors: epitaxial grown heterojunction and visible-light-driven photoresponse

机译:在Ni泡沫上生长的p官能化和o缺陷型/ vom纳米颗粒作为超级电容器的电极:外延生长异质结和可见光驱动的光响应

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P-TiOn-VOm nanowires were grown on nickel foam (NF) via a one-pot hydrothermal method and by further vapor deposition/phosphorization method. It was found that low valence states of titanium oxide and deficient-oxygen coexist in P-TiOn-VOm/NF. Furthermore, (TiO1.25)(3.07) (denoted as TiOn) and VO (denoted as VOm) possess similar structures and matched facets, and their epitaxial growth leads to the formation of TiOn/VOm heterostructure with a formation energy of -1.59 eV. P-TiOn-VOm/NF possesses good electron conductivity and electrons can be transferred from Ti to V centers, as evidenced by the DFT calculations and the XPS spectra. As a result, the specific capacity of P-TiOn-VOm/NF can reach 785 C g(-1) at 1 A g(-1) in the potential range of 0-0.55 V vs. Hg/HgO, which is much larger than those of VOm/NF, P-VOm/NF, and P-TiO2-VOm/NF. On the other hand, the TiOn/VOm heterostructure also favors the separation and transfer of photoinduced electrons and holes, and P-TiOn-VOm/NF exhibits visible-light-driven photoresponse. Under visible light illumination, the specific capacity of P-TiOn-VOm/NF is increased by 6.2% relative to that in the dark. Furthermore, the P-TiOn-VOm/NF//activated carbon (AC) asymmetric supercapacitor (ASC) shows an energy density of 37.2 W h kg(-1) at a power density of 1 kW kg(-1) and excellent cycling performance with 93.6% capacity retention after 10000 cycles at 5 A g(-1), which is comparable to and even superior to those of titanium oxides and vanadium oxides. A promising achievement has been proposed to improve the energy storage performance of P-TiOn-VOm through P-functionalization and O-deficiency in this work.
机译:通过单罐水热法和进一步的气相沉积/磷化法在镍泡沫(NF)上生长P-Tion-VOM纳米线。发现P-Tion-VOM / NF中的氧化钛和氧共存的低价态。此外,(TiO1.25)(3.07)(3.07)(表示为TiON)和VO(表示为VOM)具有相似的结构和匹配的方面,其外延生长导致形成的形成能量为-1.59eV的形成能量。 P-Tion-VOM / NF具有良好的电子电导率,并且电子可以从TI转移到V中心,如DFT计算和XPS光谱所证明。结果,P-TiON-VOM / NF的特定容量可以在0-0.55V与HgO的电位范围内以1Ag(-1)达到785℃(-1),这是多少大于VOM / NF,P-VOM / NF和P-TIO2-VOM / NF的那些。另一方面,TiON / Vom异质结构也有利于光诱导的电子和孔的分离和转移,并且P-Tion-VOM / NF呈现可见光驱动的光响应。在可见光照明下,相对于黑暗中,P-TiON-VOM / NF的比容量增加了6.2%。此外,P-TiON-VOM / NF //活性炭(AC)不对称超级电容器(ASC)以1kW kg(-1)的功率密度为37.2W H kg(-1)的能量密度,优良的循环在5A(-1)下10000次循环后的93.6%容量保留性能,其与钛氧化物和钒的含量相当。已经提出了一个有前途的成就,以通过对此作品的P函数和O缺陷来改善P-Tion-VOM的能量存储性能。

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