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Self-supported CdSe nanowire/nanosheet photoanodes on cadmium foilvia in situhydrothermal transformation of CdSe(en)(0.5)complex nanostructures

机译:且CdSe纳米线/ nanosheet光电阳极在situhydrothermal foilvia镉转型CdSe (en)(0.5)复杂nanostructures

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To solve energy crisis, the engineering of highly efficient and cost-effective photoanodes is urgently required for clean fuel generation. Herein, CdSe(en)(0.5)(en = ethylenediamine) hybrid photoanodes were synthesized by a solvothermal approach. It was revealed that a secondin situhydrothermal treatment successfully converts cadmium foil-based inorganic-organic CdSe(en)(0.5)(en = ethylenediamine) hybrid nanosheets to an oriented cadmium hydroxide crowned CdSe nanowire-decorated porous nanosheet (Cd(OH)(2)/CdSe NW/NS) heterostructure by dissolution and regrowth mechanisms. The alteration in second hydrothermal reaction conditions could modify the morphology and optical properties of the Cd(OH)(2)/CdSe NW/NS heterostructure photoanodes. The possible growth mechanism of the Cd(OH)(2)/CdSe NW/NS porous structure is studied at various second hydrothermal times using the control experiments of the synthesis. The optimized 3D porous Cd(OH)(2)/CdSe NW/NS photoanodes exhibited an outstanding photocurrent density of 6.1 mA cm(-2)at 0 Vvs. Ag/AgCl, which is approximately 7.6 times higher than that of the inorganic-organic CdSe(en)(0.5)hybrid under light irradiation (>420 nm cut off filter). A mechanism is proposed to explain the enhanced charge separation at the Cd(OH)(2)/CdSe NW/NS photoanode/electrolyte interface, which is supported by PL and photoelectrochemical analyses. These findings open an avenue of phase and morphology transmutation for efficient formation of other hierarchical structures of metal selenides and sulfides. Additionally, the Al(2)O(3)co-catalyst can act as effective hole trapping sites and improves the stability of the photoelectrode through the timely consumption of photogenerated charges, particularly holes.
机译:为了解决能源危机,高的工程有效和具有成本效益的光电阳极迫切需要对清洁燃料的一代。在此,CdSe (en) (0.5) (en =乙二胺)混合光电阳极合成了一个solvothermal方法。secondin situhydrothermal治疗成功将镉foil-based无机CdSe (en) (0.5) (en =乙二胺)混合动力车nanosheets导向的氢氧化镉加冕CdSe nanowire-decorated多孔nanosheet(Cd (OH) (2) / CdSe NW / NS)异质结构溶解和再生机制。改变在第二热液反应可以修改形态和条件光学性质的Cd (OH) (2) / CdSe NW / NS异质结光电阳极。Cd (OH)机制(2)/ CdSe NW / NS多孔研究结构在不同水热时间使用控制实验的合成。Cd (OH) (2) / CdSe NW / NS光电阳极表现出一个杰出的光电流密度6.1 mA在0 Vvs厘米(2)。的7.6倍无机CdSe (en)(0.5)混合光辐照(> 420海里切断过滤器)。提出了增强费来解释分离的Cd (OH) (2) / CdSe NW / NS光电阳极/电解质界面,这是支持PL和光电化学分析。和形态转化效率其他层次结构的形成金属硒化物和硫化物。艾尔(2)O (3) co-catalyst可以作为有效的洞捕获网站和提高的稳定性光电极通过及时消费photogenerated指控,特别是孔。

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