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Tailoring of size, emission and surface chemistry of germanium nanoparticles via liquid-phase picosecond laser ablation

机译:通过液相皮秒激光烧蚀剪裁锗纳米粒子的尺寸,排放和表面化学物质

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Germanium nanoparticles (Ge-NPs) have been studied as optical probes, and label-free and therapeutic agents for biomedical applications over the past few years. However, little progress in their synthesis has been made due to limited emission tunability and poor water stability of Ge-NPs. In this work, Ge-NPs suspensions with different emission colors, blue (approximate to 450 nm), green (approximate to 510 nm) and red (approximate to 650 nm), were prepared at room temperature via 60 ps pulsed laser ablation of the Ge target in liquid. The emission color of the Ge-NPs is tuned by adjusting the laser wavelengths (lambda = 355 nm, lambda = 532 nm and lambda = 1064 nm), and is explained in terms of an in situ ablation/photo-fragmentation process. Results also showed that laser wavelengths control the average size of Ge-NPs (from approximate to 3 to 18 nm). The effects of variables such as laser wavelengths, dispersing medium and aging time were studied. Optical (PL, FTIR, Raman) and structural (XRD, TEM, electron diffraction) investigations show that Ge-NPs prepared in organic media are more resistant to oxidation, resulting from the passivation of the Ge-NP surface, i.e., the Ge-C bond at a frequency of approximate to 700 cm(-1). We found out that the laser wavelengths act on the surface passivation degree, showing a higher Ge-C/Ge-O ratio at 532 nm laser wavelength.
机译:在过去几年中已经研究了锗纳米粒子(GE-NPS)作为光学探针,以及用于生物医学应用的无标记和治疗剂。然而,由于有限的排放可调性和GE-NPS的水稳定性,它们的合成进展很小。在这项工作中,GE-NPS悬浮液具有不同的发光颜色,蓝色(近似为450nm),绿色(近似为510nm)和红色(近似为650nm),通过60 ps脉冲激光烧蚀锗靶向液体。通过调节激光波长(Lambda = 355nm,Lambda = 532nm和Lambda = 1064nm)来调整Ge-NP的发光颜色,并以原位消融/光碎片过程解释。结果还表明,激光波长控制GE-NP的平均尺寸(从近似到3至18nm)。研究了变量,诸如激光波长,分散介质和老化时间的变量的影响。光学(PL,FTIR,拉曼)和结构(XRD,TEM,电子衍射)研究表明,在有机介质中制备的GE-NP更耐氧化,由GE-NP表面的钝化产生,即GE- C键的频率近似为700厘米(-1)。我们发现激光波长作用于表面钝化程度,显示出532nm激光波长的GE-C / GE-O比率较高。

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