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Growth of Nanobipyramid by Using Large Sized Au Decahedra as Seeds

机译:以大型金十面体为种子生长纳米双锥体

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Au nanobipyramids (NBPs) are important nano- structures which attract much attention due to their unique structure, optical, and catalytic properties. The controlled synthesis of Au NBPs and corresponding mechanistic study are highly desirable for both fundamental research and practical applications. Herein, we demonstrate a strategy that large sized Au decahedra with well-defined shape act as seeds for growing NBPs. Furthermore, through using different sized decahedra seeds with edge from 25 to 49 nm, various sized NBPs can be easily prepared (longitudinal length from 110 to 210 nm; transverse length from 36 to 70 nm). Our study provides hard evidence for the growth of NBPs that they surely stem from the overgrowth on penta-twinned decahedra. Because these used large size seeds have well-defined shape and structure, the growth of the NBPs can be easily determined. Results show that the formation of NBPs is primarily determined by the molar ratio of Au~(3+) and Au seeds (MRAA). MRAA less than 4 only causes size enhancement and no significant shape change. In cases of MRAA higher than 4 and lower than 8, quasi-nanorods are produced. When MRAA range from 8 to 10, NBPs form and the yield is higher than 9096. The effect of reaction time and temperature also are vital to the growth of NBPs. These prepared NBPs are found to exhibit excellent surface enhanced Raman scattering (SERS) performance because of many present hotspots, edges, steps, and tips on their surfaces.
机译:金纳米双锥体(NBPs)是重要的纳米结构,由于其独特的结构,光学和催化性能而备受关注。无论是基础研究还是实际应用,Au NBP的受控合成和相应的机理研究都是非常理想的。在这里,我们演示了一种策略,即形状明确的大型金十足作为生长NBP的种子。此外,通过使用边缘在25到49 nm之间的大小不同的十面体种子,可以轻松制备各种大小的NBP(纵向长度从110到210 nm;横向长度从36到70 nm)。我们的研究为NBP的增长提供了确凿的证据,它们肯定源于五联双十足虫的过度生长。由于这些使用过的大尺寸种子具有明确的形状和结构,因此可以轻松确定NBP的生长。结果表明,NBP的形成主要取决于Au〜(3+)与Au种子(MRAA)的摩尔比。 MRAA小于4仅会导致尺寸增大,并且不会发生明显的形状变化。在MRAA高于4且低于8的情况下,会产生准纳米级。当MRAA为8到10时,会形成NBP,产率高于9096。反应时间和温度的影响对NBP的生长也至关重要。由于这些表面上存在许多热点,边缘,台阶和尖端,因此发现这些制备的NBP具有出色的表面增强拉曼散射(SERS)性能。

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