Levi-Polyachenko NH, Carroll DL, Stewart JH (2008) Applications of carbon-based nanomaterials for drug delivery in oncology, In: Cataldo F, Da Ros T (eds) Medicinal chemistry and pharmacological potential of fullerenes and carbon nanotubes, carbon materials: chemistry and physics, vol 1. Scida K, Stege PW, Haby G, Messina GA, García CD (2011) Recent applications of carbon-based nanomaterials in analytical chemistry: critical review. Zhang BT, Zheng X, Li HF, Lin JM (2013) Application of carbon-based nanomaterials in sample preparation: a review. Mauter MS, Elimelech M (2008) Environmental applications of carbon-based nanomaterials. The role of d-glucose in reducing aggregation of CNS seems to be related to its influence on the polymerization process. The resulted CNS was studied for its surface and structure properties by transmission electron microscope, Brunauer–Emmett–Teller surface area bulk conductivity measurement, and Raman spectroscopy. It was found that when d-glucose, a crystalline compound, was added in the resorcinol–formaldehyde polymerization process, CNS aggregation was alleviated. In order to mitigate the agglomeration of primary CNS, we conducted step-by-step investigation of the CNS synthetic process to identify the origin of the aggregate formation and explored methods to minimize the agglomeration of the formed CNS. Doctor scida long island full#However, CNS formed large aggregates, which limit the full utilization of the nanostructures of CNS in applications. Hollow graphitized porous carbon nanosphere (CNS) materials were synthesized from the polymerization of resorcinol (R) and formaldehyde (F) in the presence of a well-characterized iron polymeric complex.
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