Tsung Chia-Kuang, Kou Xiaoshan, Shi Qihui, Zhang Jinping, Yeung Man Hau, Wang Jianfang, Stucky Galen D
Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106, USA.
J Am Chem Soc. 2006 Apr 26;128(16):5352-3. doi: 10.1021/ja060447t.
Gold nanorods (NRs) have received much attention due to their size-dependent surface plasmon-related optical properties. A seed-mediated approach has recently been developed for the synthesis of Au NRs with varying length-to-diameter aspect ratios. With the introduction of silver ions in the growth solution, Au NRs of narrow size distributions can be produced in high yields. Herein we describe an approach for the continuous and selective shortening of Au NRs synthesized by the silver ion-assisted seed-mediated method through oxidation with environmentally benign oxygen at slightly elevated temperatures. UV-visible extinction measurements indicate that the longitudinal surface plasmon band of Au NRs decreases in intensity and blue-shifts as a function of the oxidation time. Transmission electron microscopy (TEM) imaging shows that the length of Au NRs decreases with oxidation and their diameter stays almost constant, which suggests that oxidation starts at the ends of Au NRs. The size distributions of shortened Au NRs are similar to those of starting NRs. Further oxidation transforms Au NRs into nanospheres, which become smaller in diameter and finally completely disappear. It has been found that the oxidation rate of Au NRs can be controlled by temperature and acid concentration. Furthermore, high-resolution TEM studies reveal that Au NRs synthesized by the silver ion-assisted seed-mediated method are single crystalline and they stay single crystalline during oxidation. It is expected that Au NRs of any aspect ratio with narrow size distributions within the limit of that possessed by starting NRs can be produced by this mild oxidation approach.
金纳米棒(NRs)因其与尺寸相关的表面等离子体激元相关光学性质而备受关注。最近开发了一种种子介导的方法来合成具有不同长径比的金纳米棒。通过在生长溶液中引入银离子,可以高产率地制备尺寸分布窄的金纳米棒。在此,我们描述了一种通过在略高温度下用环境友好的氧气进行氧化,对银离子辅助种子介导法合成的金纳米棒进行连续和选择性缩短的方法。紫外可见消光测量表明,金纳米棒的纵向表面等离子体激元带强度降低并随着氧化时间发生蓝移。透射电子显微镜(TEM)成像显示,金纳米棒的长度随着氧化而减小,其直径几乎保持不变,这表明氧化从金纳米棒的末端开始。缩短后的金纳米棒的尺寸分布与起始纳米棒相似。进一步氧化会将金纳米棒转变为纳米球,其直径变小并最终完全消失。已发现金纳米棒的氧化速率可以通过温度和酸浓度来控制。此外,高分辨率TEM研究表明,银离子辅助种子介导法合成的金纳米棒是单晶的,并且在氧化过程中保持单晶状态。预计通过这种温和的氧化方法可以在起始纳米棒所具有的尺寸分布范围内制备出任何长径比且尺寸分布窄的金纳米棒。