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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Adsorption and sensing of an anticancer drug on the boron nitride nanocones; a computational inspection
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Adsorption and sensing of an anticancer drug on the boron nitride nanocones; a computational inspection

机译:硼氮化硼纳米内抗癌药物的吸附和感应; 计算检查

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The electrical response of boron nitride nanocones (BNNCs) to 5-Fluorouracil (5FU) drug was investigated by first-principle density functional theory (DFT). The adsorption of 5FU causes a significant decrease in the BNNCs HOMO-LUMO gap (from 4.60 to 3.39 eV), thereby, the electrical conductivity has also increased. It indicates that the BNNCs could be an appropriate candidate for 5FU detection and may be used in the electronic sensors. Furthermore, the work function of BNNCs is influenced by the 5FU adsorption and the work function of BNNCs is reduce about 18.99%, it could also be a work function based sensor for the detection of 5FU. The BNNCs have also the advantage of short recovery time about 4.25 msfor desorption of 5FU.
机译:通过第一原理密度函数理论(DFT)研究了氮化硼纳米烷酮(BNNC)至5-氟尿嘧啶(5FU)药物的电响应。 5Fu的吸附导致BNNCS Homo-Lumo间隙(4.60至3.39eV)显着降低,从而增加了电导率。 它表明,BNNC可以是5FU检测的适当候选者,并且可以在电子传感器中使用。 此外,BNNC的功函数受到5FU吸附的影响,BNNC的功函数减少约18.99%,也可以是基于工作功能的传感器,用于检测5FU。 BNNCS还具有短暂恢复时间的优势约4.25 Msfor 5Fu的解吸。

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