Liu Cheng-Che, Lin Wen-Zhi, Tsai Shang-Ting, Chang Jia-Hao, Hung Yao-Wen, Hou Shao-Yi
J Nanosci Nanotechnol. 2018 Oct 1;18(10):7197-7202. doi: 10.1166/jnn.2018.15460.
The spherical gold nanoparticles (AuNPs) typically are red in solution. However, in this study, the dichroic and spherical AuNPs were synthesized using a modified seeding growth method under reducing agent insufficiency in an aqueous solution. This particular AuNP solution is orange in reflected light and red in transmitted light. The reflectance curves confirm that the dichroic AuNPs are different from the classic AuNPs. With particle assembling, the AuNP solution is fainter orange in reflected light, but purple in transmitted light when the color of classic spherical AuNP solution is purple in both lights. Furthermore, the aggregated-nanogold solutions were added to HAuCl4 solutions with the addition of an insufficient amount reducing agent. The solution changed from faint orange to bright orange in reflected light and from purple to blue in transmitted light. It indicates that the gold assembling under a reducing agent insufficiency, not the shape of AuNP, causes the dichroic phenomenon. To the best of our knowing, this is the first study to report how the AuNP is synthesized, not the shape, affects the color of the AuNP.
球形金纳米颗粒(AuNPs)在溶液中通常呈红色。然而,在本研究中,使用改良的种子生长法在水溶液中还原剂不足的情况下合成了二向色性球形AuNPs。这种特殊的AuNP溶液在反射光下呈橙色,在透射光下呈红色。反射率曲线证实二向色性AuNPs与经典AuNPs不同。随着颗粒组装,当经典球形AuNP溶液在两种光下均为紫色时,AuNP溶液在反射光下呈较浅的橙色,但在透射光下呈紫色。此外,将聚集的纳米金溶液加入到HAuCl4溶液中,并加入不足量的还原剂。溶液在反射光下从浅橙色变为亮橙色,在透射光下从紫色变为蓝色。这表明在还原剂不足的情况下金的组装而非AuNP的形状导致了二向色性现象。据我们所知,这是第一项报道AuNP的合成方式而非形状如何影响AuNP颜色的研究。