首页> 外文会议>NATO Advanced Research Workshop on Environmental and Biological Risks of Hybrid Organic-Silicon Nanodevices >CARBON DISCS AND CARBON CONES – NEW HIGH RISK MATERIALS FOR NANO-SENSORS WITH LOW DETECTION LIMIT AND FAST KINETICS
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CARBON DISCS AND CARBON CONES – NEW HIGH RISK MATERIALS FOR NANO-SENSORS WITH LOW DETECTION LIMIT AND FAST KINETICS

机译:碳盘和碳锥 - 具有低检测限和快速动力学的纳米传感器的新型高风险材料

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Carbon cones (CCs) are the fifth form of carbon discovered in the so-called Kvaemer Carbon Black & H_2 Process (CB&H). Under well-defined conditions, CB&H produces a carbon material composed of microstructures, which are flat carbon nano discs (CND) (80%) and carbon nano cones (CNC) (20%). The carbon cones consist of curved graphite sheets: in ordinary periodic graphite, each layer consists of hexagonally arranged carbon atoms, and the five different angles observed are consistent with the incurrence of one to five pentagons at the cone. CNDs consist of stacked graphite sheets, with average radii between 0.4 and 1.5 μm and thickness between 20 and 50 nm. According to the quantum theory of nanographite, the characteristic geometry of the CNDs implies high mechanical and chemical stability in addition to the sensitive electrical properties required by transducers for nano-sensors with low detection limit and fast kinetics. This new material is expected to open new and high risk perspectives in nano-sensor technology by overcoming the major limitations of currently available nanostructures which consist of wires or tubes (including carbon nano-tubes) by improving their kinetics and sensitivity.
机译:碳锥(CCS)是在所谓的KVAEMER炭黑和H_2过程(CB&H)中发现的第五种碳。在定义明确的条件下,CB&H产生由微结构组成的碳材料,其是扁平碳纳米盘(CND)(80%)和碳纳米锥(CNC)(20%)。碳锥组成的弯曲石墨片:在普通的周期性石墨中,每层由六角排列的碳原子组成,观察到的五种不同的角度与锥体上的一到五个戊几码的效应一致。 CNDS由堆叠的石墨片组成,平均半径在0.4和1.5μm之间,厚度为20至50nm。根据纳米的量子理论,除了具有低检测极限和快速动力学的纳米传感器的纳米传感器所需的敏感性之外,CND的特征几何形状也暗示了高机械和化学稳定性。预计这一新材料将通过克服目前可用纳米结构的主要限制来开辟纳米传感器技术中的新风险观点,这些纳米结构通过改善动力学和敏感性而由电线或管(包括碳纳米管)组成。

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