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Proton Conduction via Water Bridges Hydrated in the Collagen Film

机译:通过水桥在胶原膜膜中的水桥传导

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摘要

Collagen films with proton conduction are a candidate of next generation of fuel-cell electrolyte. To clarify a relation between proton conductivity and formation of water networks in the collagen film originating from a tilapia’s scale, we systematically measured the ac conductivity, infrared absorption spectrum, and weight change as a function of relative humidity (RH) at room temperature. The integrated absorbance concerning an O–H stretching mode of water molecules increases above 60% RH in accordance with the weight change. The dc conductivity varies in the vicinity of 60 and 83% RH. From those results, we have determined the dc conductivity vs. hydration number (N) per unit (Gly-X-Y). The proton conduction is negligible in the collagen molecule itself, but dominated by the hydration shell, the development of which is characterized with three regions. For 0 < N < 2, the conductivity is extremely small, because the water molecule in the primary hydration shell has a little hydrogen bonded with each other. For 2 < N < 4, a quasi-one-dimensional proton conduction occurs through intra-water bridges in the helix. For 4 < N, the water molecule fills the helix, and inter-water bridges are formed in between the adjacent helices, so that a proton-conducting network is extended three dimensional.
机译:具有质子传导的胶原蛋白膜是下一代燃料电池电解质的候选者。为了阐明源自罗非鱼的胶原膜的质子电导率与水网络的形成关系,我们系统地测量了在室温下作为相对湿度(RH)的函数的AC电导率,红外吸收光谱和重量变化。关于水分子O-H拉伸模式的综合吸光度根据重量变化增加了60%RH。直流电导率在60和83%的RH附近变化。从那些结果中,我们确定了每单位(GLY-X-Y)的直流电导率与水合数(N)。在胶原分子本身中,质子传导可忽略不计,但由水合壳体支配,其开发具有三个区域。对于0

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