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Adsorption of melphalan anticancer drug on the surface of fullerene (C24): a comprehensive DFT study

机译:富勒烯(C24)表面上的美法仑抗癌药的吸附:全面的DFT研究

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Objective (s): The present study aimed to assess the adsorption of fullerene C24 with Melphalan anticancer agent in a solvent phase (water) at the B3LYP/6-31G (d) theoretical level.Materials and Methods: Initially, the structures of Melphalan and fullerene complexes were optimized in four configurations. Afterwards, IR calculations and molecular orbital analysis were performed. In addition, some important parameters were assessed, including the adsorption energy, Gibbs free energy changes (ΔGad), enthalpy (ΔHad) variations, thermodynamic equilibrium constant, specific heat capacity, chemical hardness, energy gap, and electrophilicity. Results: According to the results, Gibbs free energy changes (ΔGad), enthalpy (ΔHad) variations, III-Isomer, and IV-Isomer were negatives at various temperatures, while for I-Isomer and II-Isomer were positives throughout the temperature range of 298.15-310.15 K.Conclusion: Since according to the obtained results for adsorption of Melphalan on the C24 in , III-Isomer, and IV-Isomer were spontaneous at various temperatures, while I-Isomer and II-Isomer were not spontaneous throughout the temperature range of 298.15-310.15 K.Conclusion: Since the adsorption of Melphalan with fullerene C24 is spontaneous. Moreover, the effects of temperature on thermodynamic parameters were investigated, and the calculated specific heat capacity values indicated that C24 could be utilized as a sensing material in the construction of thermal biosensors for Melphalan determination.
机译:目的:本研究旨在在理论水平B3LYP / 6-31G(d)的条件下评估Melphalan抗癌剂对富勒烯C24在溶剂相(水)中的吸附。材料与方法:最初,Melphalan的结构富勒烯配合物以四种构型进行了优化。之后,进行IR计算和分子轨道分析。另外,评估了一些重要参数,包括吸附能,吉布斯自由能变化(ΔGad),焓(ΔHad)变化,热力学平衡常数,比热容,化学硬度,能隙和亲电性。结果:根据结果,吉布斯自由能变化(ΔGad),焓(ΔHad)变化,III-异构体和IV-异构体在不同温度下均为负值,而I-异构体和II-异构体在整个温度范围内均为正值结论:根据所获得的Melphalan在C24中的吸附结果,在不同温度下III-异构体和IV-异构体是自发的,而在整个温度下I-异构体和II-异构体并非自发的。温度范围为298.15-310.15K。结论:由于Melphalan在富勒烯C24上的吸附是自发的。此外,研究了温度对热力学参数的影响,计算出的比热容值表明C24可以用作Melphalan测定用热生物传感器的传感材料。

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