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Synthesis,characterization,and investigation of capacitance and redox properties of selfassembled Phe-Phe with ferrocene conjugates

机译:的合成、表征和调查selfassembled电容和氧化还原性能Phe-Phe与二茂铁轭合物

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The synthesis,nanostructure self-assembly and electrochemical properties of a series of ferrocene conjugated peptides derived from the dipeptide Phe-Phe,a nucleoside and a peptide nucleic acid unit,which are covalently attached through a triazole linker,are described.The semiconducting nature of the ferrocene conjugated peptides in modified carbon electrodes suggested their potential use in novel capacitors and as biomaterials.To understand the effect of ferrocene substituents on C-/N-termini,a series of Phe-Phe derivatives were prepared and their self-assembled morphology and electrochemical properties were evaluated.Attachment of alkynes(propyne)at C-termini resulted in nanorods for Fc-Phe-Phe-propyne and in spherical structures after conjugation with a nucleoside and PNA.The formation of spherical particles from nanorods occurred after click conjugation at C-termini which clearly shows the effect of chemical modification on their self-assembly.The potential supercapacitor device-material was obtained after adhering the self-assembled peptide on carbon electrodes.Here,we attempted to further examine the effect of structure and properties by modifying the functional N-and C-terminus conjugated substituents on Fc-Phe-Phe through its self-assembly process.The morphological characterization of these ferrocene peptides was done via FESEM,AFM and DLS experiments.We studied the effect of ferrocene with the conjugation of a nucleoside and PNA on self-assembly.Further,we studied the electrochemical properties including cyclic voltammetry to calculate the capacitance of all the ferrocene conjugated peptides.The results point to a new direction in the study of the Phe-Phe motif to rationally engineer new functional nanoarchitectures involving rational design of short metallocene peptide-based biomaterials and biosensors.
机译:的合成、纳米结构自组装电化学性能的一系列二茂铁结合肽来源于二肽Phe-Phe,核苷肽核酸,共价结合通过一个三唑链接器,。二茂铁的半导体性质共轭肽在碳电极建议修改他们在小说电容器和潜在用途生物材料。二茂铁取代基对C - / N-termini系列Phe-Phe衍生品和他们就做好了准备自组装形态和电化学性能评估。在c终端炔烃(丙炔)导致纳米棒Fc-Phe-Phe-propyne和球核苷结构接合后和机构。纳米棒发生后点击接合c终端,清楚地显示的效果自组装化学改性。潜在的超级电容器device-material是坚持自我组装后获得的肽对碳电极。进一步检查结构的影响通过修改功能n和属性糖基取代基共轭Fc-Phe-Phe通过自组装过程。这些二茂铁的形态特征肽是通过FESEM, AFM和DLS实验。与核苷和机构的结合自组装。电化学性能包括循环伏安法计算电容的二茂铁的共轭肽。指出研究的新方向Phe-Phe理性工程师新主题功能性nanoarchitectures涉及理性茂金属短肽链型的设计生物材料和生物传感器。

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