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首页> 外文期刊>Bulletin of Materials Science >Novel visible-range luminescence of pristine nanozirconia phosphor using green fabrication techniques
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Novel visible-range luminescence of pristine nanozirconia phosphor using green fabrication techniques

机译:采用绿色制造技术的新型碱性纳米锆磷的新型可见范围发光

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We report unification of pristine nanozirconia phosphor (PNZP), which exhibits orange-red luminescence. PNZP was developed in a lucid manner by the reduction of a zirconyl oxy chloride (ZrOCl2 8H2O) solution with a wet leaf extract of Syzygium cumini (S. cumini) using green fabrication techniques (ultrasonication and microwave irradiation) in the absence of a surfactant and a base, which opens a new avenue for designing novel visible-range luminescence nanophosphors. The ultraviolet-visible spectrum of the aqueous medium containing zirconia nanoparticles showed an absorption peak at around 262 nm. Powder X-ray diffraction study showed that the particles are crystalline in nature, with an average size of approximate to 2.06 mml:mspace width=0.333333em mspace nm comprising a tetragonal/monoclinic ZrO2 structure. Photoluminescence spectroscopy study has shown a sharp emission peak at 603 nm and broad emission peaks at 670 and 720 nm at 350 nm excitation. The most useful outcome of this work will be the development of pure nanophosphors using plant extracts which contain different fluorophores, with applications in nanoelectronic devices, catalysis, optoelectronics and piezoelectric devices.
机译:我们报告原始纳米锆磷(PNZP)的统一,呈现橙红发光。通过使用绿色制造技术(超声波和微波辐射)在不存在表面活性剂和一个基地,打开了设计新型可见范围发光纳米磷的新途径。含有氧化锆纳米颗粒的水性介质的紫外线可见光谱显示出约262nm的吸收峰。粉末X射线衍射研究表明,颗粒本质上是结晶的,平均尺寸为2.06mmL:MSPACE宽度= 0.333333EM MSPACE NM,包括四边形/单斜晶ZrO2结构。光致发光光谱研究已经在350nm激发下示出了603nm处的急剧发射峰值和670和720nm的宽发射峰。这项工作的最有用结果将是使用含有不同荧光团的植物提取物的纯纳米膦的开发,在纳米电子器件,催化,光电子和压电装置中的应用。

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