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The non-aqueous synthesis of shape controllable Cu2-xS plasmonic nanostructures in a continuous-flow millifluidic chip for the generation of photo-induced heating

机译:在连续流动的微流控芯片中非水合成形状可控的Cu2-xS等离子体纳米结构以产生光致加热

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摘要

In this paper, a new method for synthesizing non-aqueous copper sulfide nanocrystals with different shapes and sizes using a homemade continuous-flow millifluidic chip is presented. Conventionally, the shape control of nanocrystals was accomplished using a surfactant-controlled approach, where directional growth is facilitated by selective passivation of a particular facet of the nanocrystals using surfactants. We demonstrate a "surfactant-free" approach where different sizes and shapes (i.e. spherical, triangular prism and rod) of plasmonic copper sulfide (Cu2-xS) nanocrystals can be fabricated by adjusting the flow rate and precursor concentrations. As continuous-flow synthesis enables uniform heating and easy variation of precursors' stoichiometries, it serves as an excellent incubation platform for nanoparticles due to its simplicity and high reproducibility. Transmission electron microscopy (TEM), fast Fourier transform (FFT) and X-ray diffraction (XRD) techniques were used to characterize the as-synthesized nanocrystals and revealed structures ranging from copper-deficient covellite (CuS), spionkopite (Cu1.39S), roxbyite (Cu1.75S), to copper-rich djurleite (Cu1.94S). The localized surface plasmon resonance (LSPR) peak of the nanocrystals can be tuned from 1115 to 1644 nm by simply varying the copper to sulfur molar ratio and flow rate. Furthermore, photothermal effects of Cu2-xS nanocrystals were also demonstrated to annihilate the RAW264.7 cells upon near infra-red laser irradiation.
机译:本文提出了一种使用自制的连续流微流控芯片合成具有不同形状和尺寸的非水硫化铜纳米晶体的新方法。常规地,使用表面活性剂控制的方法来完成纳米晶体的形状控制,其中通过使用表面活性剂选择性地钝化纳米晶体的特定面来促进定向生长。我们展示了一种“无表面活性剂”的方法,其中可以通过调节流速和前体浓度来制造不同尺寸和形状的等离子硫化铜(Cu2-xS)纳米晶体(球形,三棱柱和棒状)。由于连续流合成能够均匀加热并容易改变前体的化学计量,因此,由于其简单性和高可重复性,它可作为纳米颗粒的绝佳孵育平台。透射电子显微镜(TEM),快速傅立叶变换(FFT)和X射线衍射(XRD)技术用于表征合成后的纳米晶体,并揭示了结构从缺铜的铜铝矾石(CuS),钠云母(Cu1.39S) ,铬铁矿(Cu1.75S)到富含铜的金水榴石(Cu1.94S)。通过简单地改变铜与硫的摩尔比和流速,可以将纳米晶体的局部表面等离子体共振(LSPR)峰从1115调整到1644 nm。此外,还证明了Cu2-xS纳米晶体的光热效应可在近红外激光辐照时歼灭RAW264.7细胞。

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