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Metallization and investigation of electrical properties of invitro recrystallized mSbsC-eGFP assemblies

机译:体外重结晶mSbsC-eGFP组件的金属化和电性能研究

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摘要

Surface layer (SL) proteins are self-assembling nanosized arrays which can be recrystallized in solution or on surfaces. In this paper, we investigate the metallization, contact potential difference and conductivity of invitro recrystallized mSbsC-eGFP tube-like assemblies for possible applications in nanobiotechnology. Treatment of mSbsC-eGFP tube-like structures with 150mM Pt salt solution resulted in the formation of metallized SL assemblies decorated with Pt nanoparticles (> 3nm) which were closely packed and aggregated into metal clusters. Kelvin probe force microscopy (KPFM) measurements revealed that metallized and unmetallized SL templates showed different surface potential behaviours, demonstrating that the metal coating changes the electrostatic surface characteristics of SL assemblies. Insitu conductivity measurements showed that unmetallized SL assemblies were not conductive. Metallized samples showed linear I-V dependence between - 1 and + 1V with a conductivity of ~ 10~3Sm~(- 1).
机译:表面层(SL)蛋白是可在溶液中或表面上重结晶的自组装纳米级阵列。在本文中,我们研究了体外重结晶的mSbsC-eGFP管状组件的金属化,接触电势差和电导率,以便在纳米生物技术中应用。用150mM的Pt盐溶液处理mSbsC-eGFP管状结构导致形成装饰有Pt纳米颗粒(> 3nm)的金属化SL组件,这些纳米颗粒紧密堆积并聚集成金属簇。开尔文探针力显微镜(KPFM)测量表明,金属化和未金属化的SL模板显示出不同的表面电势行为,表明金属涂层改变了SL组件的静电表面特性。原位电导率测量表明,未金属化的SL组件不导电。金属化样品的线性I-V依赖性介于-1和+ 1V之间,电导率为〜10〜3Sm〜(-1)。

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