Adamantane, Irene, Naftazone and Pyridine-Enhanced Precatalyst Preparation Stabilization and Initiation (PEPPSI) Nano Molecules

A. Heidari
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引用次数: 78

Abstract

In the current editorial, we study Adamantane, Irene, Naftazone and Pyridine– enhanced precatalyst preparation stabilization and initiation (PEPPSI) Nano molecules (Figure 1) incorporation into the Nano Polymeric Matrix (NPM) by immersion of the Nano Polymeric Modified Electrode (NPME) as molecular enzymes and drug targets for human cancer cells, Tissues and tumors treatment under synchrotron and synchrocyclotron radiations. In this regard, the development of Chemical Modified Electrodes (CEMs) is at present an area of great interest. CEMs can be divided broadly into two main categories; namely, Surface modified and bulk modified electrodes. Methods of surface modification include adsorption, Covalent bonding, attachment of polymer Nano films, etc. Polymer Nano film coated electrodes can be differentiated from other modification methods such as adsorption and covalent bonding in that they usually involve multilayer as opposed to monolayer frequently encountered for the latter methods. The thicker Nano films imply more active sites which lead to larger analytical signals. This advantage coupled with other, Their versatility and wide applicability, Makes polymer Nano film modified electrodes particularly suitable for analytical applications [1-27].
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金刚烷、Irene、纳夫他酮和吡啶增强预催化剂制备、稳定和引发(PEPPSI)纳米分子
在当前的编辑中,我们研究了金刚烷、Irene、Naftazone和吡啶-增强预催化剂制备、稳定和引发(PEPPSI)纳米分子(图1),通过纳米聚合物修饰电极(NPME)浸泡将纳米聚合物基质(NPM)作为分子酶和药物靶点,在同步加速器和同步回旋辐射下治疗人类癌细胞、组织和肿瘤。在这方面,化学修饰电极(CEMs)的发展是目前非常感兴趣的领域。CEMs大致可分为两大类;即表面修饰电极和本体修饰电极。表面改性的方法有吸附法、共价键法、高分子纳米膜附着法等。聚合物纳米膜涂覆电极可以区别于其他修饰方法,如吸附和共价键,因为它们通常涉及多层,而不是后者经常遇到的单层。纳米薄膜越厚意味着活性位点越多,从而导致分析信号越大。这一优点与其他优点相结合,它们的多功能性和广泛的适用性,使得聚合物纳米膜修饰电极特别适合于分析应用[1-27]。
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