Nguyen Au Lac, Griffin Quinn J, Wang Ankai, Zou Shengli, Jing Hao
Department of Chemistry and Biochemistry, George Mason University, Fairfax, Virginia 22030, United States.
Department of Chemistry, University of Central Florida, Orlando, Florida 32816, United States.
J Phys Chem C Nanomater Interfaces. 2025 Feb 14;129(8):4303-4312. doi: 10.1021/acs.jpcc.4c08818. eCollection 2025 Feb 27.
The synthesis of high-purity gold nano bipyramids (Au NBPs) with a narrow size distribution and tunable plasmon resonances is of great significance for plasmon resonance-related applications. However, the synthesis Au NBP approach involves multiple steps with many parameters that can affect the purity of the final product. In this work, we were devoted to studying the effect of the molar ratio between hexadecyltrimethylammonium chloride (CTAC) and sodium citrate tribasic dihydrate (CiNa) on the seed formation stage. The results showed that the yield of Au NBP product has dramatically increased with the seed solution made from the molar ratio of CTAC:CiNa at 21:1. Furthermore, using this optimal seed, we can efficiently synthesize Au NBPs with various sizes by adjusting the concentration of the seed but keeping the rest of the parameters constant. In this study, the longitudinal localized surface plasmon resonances (LSPRs) of Au NBPs exhibit tunability beyond 450 nm across the visible and near-infrared regions from 774 to 1224 nm. We were able to successfully fine-tune the LSPRs of Au NBPs in the spectral region to become resonant with the excitation wavelengths of an 808 nm near-infrared (NIR) laser. The photothermal activities of Au NBPs were studied under 808 nm laser irradiation at ambient conditions. The present work demonstrates a paradigm for the synthesis of Au NBPs with tunable LSPRs in a precise and controllable manner, achieved by examining the surfactant ratios in the formation of penta-twinned seeds.
合成具有窄尺寸分布和可调谐等离子体共振的高纯度金纳米双棱锥(Au NBP)对于等离子体共振相关应用具有重要意义。然而,合成Au NBP的方法涉及多个步骤,有许多参数会影响最终产物的纯度。在这项工作中,我们致力于研究十六烷基三甲基氯化铵(CTAC)与柠檬酸三钠二水合物(CiNa)的摩尔比对种子形成阶段的影响。结果表明,当CTAC与CiNa的摩尔比为21:1制成种子溶液时,Au NBP产物的产率显著提高。此外,使用这种最佳种子,我们可以通过调整种子浓度但保持其他参数不变,有效地合成各种尺寸的Au NBP。在本研究中,Au NBP的纵向局域表面等离子体共振(LSPR)在774至1224 nm的可见和近红外区域表现出超过450 nm的可调谐性。我们能够成功地在光谱区域微调Au NBP的LSPR,使其与808 nm近红外(NIR)激光的激发波长共振。在环境条件下,研究了808 nm激光照射下Au NBP的光热活性。本工作展示了一种通过研究五重孪晶种子形成过程中的表面活性剂比例,以精确可控的方式合成具有可调谐LSPR的Au NBP的范例。