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Electro-deposition of thin cellulose films at boron-doped diamond substrates

机译:在硼掺杂的金刚石基底上电沉积纤维素薄膜

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Cellulose films of variable thickness are electro-deposited from aqueous alkaline thiourea solution onto polished boron-doped diamond substrates in an anodic process. Films with "net-like" topography are formed and shown to consist of both cellulose-I and cellulose-II components. Properties of these films are investigated. When immersed in aqueous electrolyte solution, ion partitioning into the electro-deposited cellulose films occurs. The accumulation and release of two aqueous redox systems, Ru(NH3)(6)(3+/2+) and methylviologen(2+/+), is reported. Relatively slow diffusion of these cations is observed within cellulose (approximately 5 orders of magnitude slower when compared to diffusion in aqueous media). For the methylviologen(2+/+) redox system partitioning leads to irreversibility in the voltammetric response and to the preferred formation of aggregates immobilized within the cellulose film. (c) 2006 Elsevier B.V. All rights reserved.
机译:在阳极工艺中,将可变厚度的纤维素膜从碱性硫脲水溶液中电解沉积到抛光的掺硼金刚石基底上。形成具有“网状”形貌的膜,并显示其由纤维素-I和纤维素-II组分组成。研究了这些膜的性能。当浸入电解质水溶液中时,发生离子分配进入电沉积的纤维素膜中。据报道,两个水性氧化还原系统,Ru(NH3)(6)(3 + / 2 +)和甲基紫精(2 + / +)的积累和释放。在纤维素中观察到这些阳离子的扩散相对较慢(与在水性介质中的扩散相比,大约慢了5个数量级)。对于甲基紫精(2 + / +)氧化还原系统,分区导致伏安反应不可逆,并导致固定在纤维素膜中的聚集体的形成。 (c)2006 Elsevier B.V.保留所有权利。

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