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TiO 2 Nanotube Arrays: Fabricated by Soft–Hard Template and the Grain Size Dependence of Field Emission Performance

机译:TiO 2 纳米管阵列:由软硬模板制备和场发射性能的晶粒尺寸依赖性

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Highly ordered TiO~(2)nanotube (TNT) arrays were successfully synthesized by the combination of soft and hard templates. In the fabrication of them, anodic aluminum oxide membranes act as the hard template while the self-assembly of polystyrene-block-poly(ethylene oxide) (PS-b-PEO) complexed with titanium-tetraisopropoxide (TTIP, the precursor of TiO~(2)) provides the soft template to control the grain size of TiO~(2)nanotubes. Our results indicate that the field emission (FE) performance depends crucially on the grain size of the calcinated TiO~(2)which is dominated by the PS-b-PEO and its blending ratio with TTIP. The optimized sample (with the TTIP/PEO ratio of 3.87) exhibits excellent FE performances involving both a low turn-on field of 3.3?V/um and a high current density of 7.6?mA/cm_(2)at 12.7?V/μm. The enhanced FE properties can be attributed to the low effective work function (1.2?eV) resulted from the smaller grain size of TiO~(2).
机译:结合软模板和硬模板成功合成了高阶TiO〜(2)纳米管(TNT)阵列。在它们的制造中,阳极氧化铝膜充当硬模板,而聚苯乙烯嵌段聚环氧乙烷(PS-b-PEO)与钛四异丙醇(TTIP)络合的自组装(2))提供了软模板来控制TiO〜(2)纳米管的晶粒尺寸。我们的结果表明,场发射(FE)性能关键取决于煅烧的TiO〜(2)的晶粒尺寸,该晶粒主要由PS-b-PEO及其与TTIP的混合比决定。经过优化的样品(TTIP / PEO比为3.87)表现出出色的有限元性能,包括在3.3V / um的低导通场和在12.7V / V的高电流密度(7.6)mA / cm_(2)。微米有限元性能的提高可归因于较小的TiO〜(2)晶粒导致的有效功函数(1.2?eV)较低。

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