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Gelatin- and DNA-based ionic conducting membranes for electrochromic devices

机译:用于电致变色器件的基于明胶和DNA的离子导电膜

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Gelatin and DNA are abundant natural products with very good biodegradation properties and can be used to obtain acetic acid or LiClO_4-based gel polymer electrolytes (GPEs) with high ionic conductivity and good stability. This article presents the results of the ionic conductivity measurements of GPEs membranes based on crosslinked and plasticized gelatin and on plasticized DNA as well as on inserted/extracted charge density of electrochemical devices (ECDs) obtained with these samples. The membranes were analyzed by impedance spectroscopy, UV-Vis spectroscopy and the ECDs by charge density measurements, respectively. At room temperature the measured ionic conductivity of the membranes is in the range of 10~(-4)-10~(-5) S/cm. It obeys predominantly an Arrhenius relationship in function of temperature. The ECD with red gelatin changed the color from red to deep red and the ECD with DNA-based electrolyte changes from transparent to blue. The inserted charge density values of these ECDs were of-3.0 mC/cm~2 for the device with red gelatin and -6.6 mC/cm~2 for the ECD with DNA-based electrolyte. The reverse potential application promoted a charge extraction and, as consequence, bleaching of the devices. Good ionic conductivity results combined with transparency and good adhesion to the electrodes and promising preliminary results of small ECDs have shown that gelatin and DNA-based GPEs are very promising materials to be used as gel polymer electrolytes in electrochromic devices.
机译:明胶和DNA是丰富的天然产物,具有很好的生物降解性能,可用于获得具有高离子电导率和良好稳定性的乙酸或LiClO_4基凝胶聚合物电解质(GPE)。本文介绍了基于交联增塑明胶和增塑DNA的GPE膜的离子电导率测量结果,以及这些样品获得的电化学装置(ECD)的插入/提取电荷密度。分别通过阻抗光谱,UV-Vis光谱和通过电荷密度测量的ECD来分析膜。在室温下,测得的膜的离子电导率在10〜(-4)-10〜(-5)S / cm的范围内。在温度函数上,它主要服从阿伦尼乌斯(Arrhenius)关系。带有红色明胶的ECD将颜色从红色变为深红色,带有基于DNA的电解质的ECD从透明变为蓝色。对于带有红色明胶的器件,这些ECD的插入电荷密度值为-3.0 mC / cm〜2,对于具有基于DNA的电解质的ECD,其插入电荷密度值为-6.6 mC / cm〜2。反向电势的应用促进了电荷的提取,从而促进了器件的漂白。良好的离子电导率结果与透明性以及对电极的良好粘合性以及小型ECD的有希望的初步结果表明,明胶和基于DNA的GPE是非常有希望的材料,可用作电致变色器件中的凝胶聚合物电解质。

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