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Physical and fluorescent characteristics of non-functionalized carbon nanoparticles from candle soot

机译:蜡烛烟灰中非功能化碳纳米粒子的物理和荧光特性

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Candle soot deposited on copper plate was collected, and dispersed in various organic solvents, and in water. These non-functionalized samples were probed with an array of experimental techniques. Results of energy-dispersive X-ray analysis confirmed the absence of metallic elements and X-ray diffraction (XRD) study confirmed the presence of amorphous as well as graphitized carbon in these nanostructures with minimum grain size ≈2 nm. TEM data revealed the presence of 30 nm diameter spherical carbon nanoparticles and dynamic light scattering determined the average hydrodynamic diameter ≈120 nm in water, implying the packing of these nanoparticles into clusters. Raman spectroscopy showed characteristic peaks located at 1324 and 1591 cm−1 corresponding to the D (diamond) and G (graphite) phase of carbon with the characteristic ratio I D /I G ≈ 1.77, yielding 2.4 nm grain size consistent with XRD data. The electrophoresis measurements yielded mean zeta potential values ≈−22 mV in water. The UV–Vis absorption and photoluminiscence (PL) spectra were found to be independent of the solvent nature and polarity, with absorption bands located around 430, 405, 385, and 335 nm, and PL emission peaks lying in the region 390 to 465 nm. Average emission lifetime measured by time resolved fluorescence spectroscopy was observed to decrease with increase in solvent polarity for a particular excitation, and with increasing excitation wavelength in all solvents. It is shown that these nanoparticles have the potential to be used as green fluorescence probes.
机译:收集沉积在铜板上的烟灰,并分散在各种有机溶剂和水中。这些非功能化的样品用一系列实验技术进行了探测。能量色散X射线分析的结果证实了金属元素的不存在,X射线衍射(XRD)研究证实了这些纳米结构中无定形以及石墨化碳的存在,其最小晶粒尺寸约为2 nm。 TEM数据显示存在直径为30 nm的球形碳纳米颗粒,动态光散射确定了水中的平均流体动力学直径≈120nm,这意味着这些纳米颗粒堆积成簇。拉曼光谱显示特征峰位于1324和1591 cm −1 处,对应于碳的D(金刚石)和G(石墨)相,特征比为I D / I G ≈1.77,产生的2.4 nm晶粒尺寸与XRD数据一致。电泳测量得出水中的平均zeta电位值≈-22mV。发现UV-Vis吸收和光致发光(PL)光谱与溶剂的性质和极性无关,吸收带位于430、405、385和335 nm左右,PL发射峰位于390至465 nm范围内。对于特定的激发,观察到通过时间分辨荧光光谱法测量的平均发射寿命随着溶剂极性的增加而降低,并且在所有溶剂中,随着激发波长的增加,平均发射寿命会降低。结果表明,这些纳米颗粒具有用作绿色荧光探针的潜力。

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