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Biomineralized N-doped CNT/TiO _2 core/shell nanowires for visible light photocatalysis

机译:生物矿化N掺杂的CNT / TiO _2核/壳纳米线用于可见光的光催化

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摘要

We report an efficient and environmentally benign biomimetic mineralization of TiO _2 at the graphitic carbon surface, which successfully created an ideal TiO _2/carbon hybrid structure without any harsh surface treatment or interfacial adhesive layer. The N-doped sites at carbon nanotubes (CNTs) successfully nucleated the high-yield biomimetic deposition of a uniformly thick TiO _2 nanoshell in neutral pH aqueous media at ambient pressure and temperature and generated N-doped CNT (NCNT)/TiO _2 core/shell nanowires. Unlike previously known organic biomineralization templates, such as proteins or peptides, the electroconductive and high-temperature-stable NCNT backbone enabled high-temperature thermal treatment and corresponding crystal structure transformation of TiO _2 nanoshells into the anatase or rutile phase for optimized material properties. The direct contact of the NCNT surface and TiO _2 nanoshell without any adhesive interlayer introduced a new carbon energy level in the TiO _2 band gap and thereby effectively lowered the band gap energy. Consequently, the created core/shell nanowires showed a greatly enhanced visible light photocatalysis. Other interesting synergistic properties such as stimuli-responsive wettabilites were also demonstrated.
机译:我们报告了在石墨碳表面上TiO _2的高效,环保的仿生矿化作用,成功地创建了理想的TiO _2 /碳杂化结构,而没有进行任何粗糙的表面处理或界面粘合层。碳纳米管(CNTs)上的N掺杂位点成功地成核了均匀厚的TiO _2纳米壳在中性pH水溶液中在环境压力和温度下的高产率仿生沉积,并生成了N掺杂的CNT(NCNT)/ TiO _2核/壳纳米线。与先前已知的有机生物矿化模板(例如蛋白质或肽)不同,导电且耐高温的NCNT主链可进行高温热处理,并将TiO _2纳米壳的相应晶体结构转变为锐钛矿或金红石相,从而优化了材料性能。 NCNT表面与TiO _2纳米壳的直接接触而没有任何粘合剂夹层,在TiO _2带隙中引入了新的碳能级,从而有效降低了带隙能。因此,产生的核/壳纳米线显示出​​大大增强的可见光光催化作用。还展示了其他有趣的协同特性,如刺激响应性白陶土。

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