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Alkali-corrosion synthesis and excellent DSSC performance of novel jujube-like hierarchical TiO2 microspheres

机译:碱腐蚀合成和优异的新型枣类似DIO2微球的性能

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Novel jujube-like hierarchical TiO2 microspheres (HTMs) were synthesized by an alkali-corrosion process of titanium phosphate (Ti2O3(H2PO4)(2) . 2HO) microspheres. The hierarchical titanium phosphate microsphere (HTPM) intermediates consisting of nanoflakes with a thickness of 20 nm were firstly prepared by a facile hydrothermal method. After reacting with diluted NaOH at low temperature and atmospheric pressure, followed by subsequent acid washing and a calcination process, the HTPM intermediates were transformed to TiO2 with the microsphere morphology well retained, while the nanoflakes became porous, and some new nanowires were formed between the nanoflakes. Finally, HTMs consisting of porous nanoflakes and nanowires were obtained. The possible growth mechanisms of HTPMs and HTMs are discussed. The HTMs demonstrate high specific surface area and excellent light-scattering ability. The performance of the dye sensitized solar cells (DSSCs) of the HTMs synthesized under different conditions is studied, and a total conversion efficiency of up to 8.93% was obtained. The improved DSSC performance was attributed to the enhanced dye loading, light-scattering, and charge transporting ability of the HTMs with a unique hierarchical nanostructure.
机译:通过磷酸钛(Ti2O3(H2PO4)(2)。2HO)微球的碱 - 腐蚀方法合成了新型枣类似物TiO2微球(HTM)。首先通过容易水热法制备由厚度为20nm的纳米薄片组成的分层磷酸钛微球(HTPM)中间体。在低温和大气压下与稀释的NaOH反应后,随后进行后续酸洗和煅烧过程,将HTPM中间体转化为TiO 2,在微球形态良好保留,而纳米薄片变得多孔,并且在纳米薄片之间形成了一些新的纳米线纳米薄片。最后,获得了由多孔纳米薄片和纳米线组成的HTM。讨论了HTPM和HTM的可能生长机制。 HTMS表现出高比表面积和优异的光散射能力。研究了在不同条件下合成的HTMS的染料敏化太阳能电池(DSSCs)的性能,得到了高达8.93%的总转化效率。改进的DSSC性能归因于HTM的增强型染料负载,光散射和电荷传输能力,具有独特的分层纳米结构。

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