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Studies of Ultrafast Transient Absorption Spectroscopy of Gold Nanorods in an Aqueous Solution

机译:金纳米棒在水溶液中的超快速瞬态吸收光谱研究

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Herein, ultrafast transient absorption spectroscopy is performed to probe the electron transfer studies between aqueous solution and gold nanorods (Au NRs). The seed-mediated growth method is used to synthesize crystalline cylindrical Au NRs having longitudinal plasmon resonance peak maximum at 825 nm. The as-synthesized Au NRs show average width and length of ~10 ± 2 and ~50 ± 2 nm, respectively, with an aspect ratio in the range of ~5. The time-resolved decay profiles have been studied in a subpicosecond resolution range using pump wavelength at 410 nm excitation and probe wavelengths from visible to near-infrared region. The plasmon dynamics studies of Au NRs depend on the electron heating phenomena, coherent acoustic phonon vibration and electronic transient behavior, i.e., electron–phonon coupling, and homogenous dephasing processes. Thus, the obtained results highlighted that the ultrafast charge transfer dynamics studies in Au NRs could play an important role to elucidate their electronic, photothermal, and optical properties for molecular imaging, photothermal therapy, and optoelectronic and light-harvesting devices.
机译:在本文中,执行超快速瞬态吸收光谱法以探测水溶液与金纳米棒(Au NRs)之间的电子转移研究。种子介导的生长方法用于合成在825 nm处具有最大纵向等离振子共振峰的圆柱形圆柱形Au NR。合成后的金NR的平均宽度和长度分别为〜10±2和〜50±2 nm,纵横比在〜5范围内。已在亚皮秒分辨率范围内使用410 nm激发的泵浦波长和从可见光到近红外区域的探测波长研究了时间分辨衰减曲线。 Au NRs的等离激元动力学研究取决于电子加热现象,相干声子振动和电子瞬态行为,即电子-声子耦合以及均相移相过程。因此,获得的结果强调了金纳米粒子中超快电荷转移动力学的研究对于阐明其在分子成像,光热疗法以及光电和光收集装置中的电子,光热和光学性质起着重要作用。

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