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Carbon Nanospheres: 'Green' Synthesis, Characterization, and Growth Kinetics

机译:碳纳米球:“绿色”合成,表征和生长动力学

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An attempt is made to understand the growth kinetics of carbon nanospheres (CNS) synthesized using a "green" technique. An aqueous solution of glucose, the precursor, was hydrothermally treated to produce porous CNS with homogeneous size distribution and smooth surfaces. The growth of CNS was studied by evaluating transmission electron microscope images as a function of hydrothermal reaction time and temperatures. Raman spectra revealed the presence of short-ordered graphitic nanostructures in an amorphous carbon matrix. FTIR spectroscopy confirms the carbonization of glucose and shows the presence of surface hydroxyl groups on CNSs. Based on various experimental observations it is proposed that the growth of CNSs is dictated by a reaction-controlled mechanism where long chain glucose-based oligomers bond to the CNS surface. The narrow size distribution and highly hydrophilic surface of these amorphous CNS makes them potential candidates for biomedical applications.
机译:试图了解使用“绿色”技术合成的碳纳米球(CNS)的生长动力学。将葡萄糖水溶液(前体)进行水热处理,以生产具有均一尺寸分布和光滑表面的多孔CNS。通过评估透射电子显微镜图像作为水热反应时间和温度的函数,研究了CNS的生长。拉曼光谱揭示了在无定形碳基质中存在短序的石墨纳米结构。 FTIR光谱证实了葡萄糖的碳化并显示了CNS上表面羟基的存在。基于各种实验观察,提出中枢神经系统的生长是由反应控制机制决定的,其中长链葡萄糖基低聚物键合到中枢神经系统表面。这些无定形CNS的窄尺寸分布和高度亲水的表面使其成为生物医学应用的潜在候选者。

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