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基于 o-硝基壳聚糖的生物聚合物电解质的合成与表征及其在电化学器件中的应用。

Synthesis and characterizations of o-nitrochitosan based biopolymer electrolyte for electrochemical devices.

机构信息

Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Selangor Darul Ehsan, Malaysia.

Polymer Research Center (PORCE), Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Selangor Darul Ehsan, Malaysia.

出版信息

PLoS One. 2019 Feb 15;14(2):e0212066. doi: 10.1371/journal.pone.0212066. eCollection 2019.

Abstract

For the past decade, much attention was focused on polysaccharide natural resources for various purposes. Throughout the works, several efforts were reported to prepare new function of chitosan by chemical modifications for renewable energy, such as fuel cell application. This paper focuses on synthesis of the chitosan derivative, namely, O-nitrochitosan which was synthesized at various compositions of sodium hydroxide and reacted with nitric acid fume. Its potential as biopolymer electrolytes was studied. The substitution of nitro group was analyzed by using Attenuated Total Reflectance Fourier Transform Infra-Red (ATR-FTIR) analysis, Nuclear Magnetic Resonance (NMR) and Elemental Analysis (CHNS). The structure was characterized by X-ray Diffraction (XRD) and its thermal properties were examined by using differential scanning calorimetry (DSC) and thermal gravimetric analysis (TGA). Whereas, the ionic conductivity of the samples was analyzed by electrochemical impedance spectroscopy (EIS). From the IR spectrum results, the nitro group peaks of O-nitrochitosan, positioned at 1646 and 1355 cm-1, were clearly seen for all pH media. At pH 6, O-nitrochitosan exhibited the highest degree of substitution at 0.74 when analyzed by CHNS analysis and NMR further proved that C-6 of glucosamine ring was shifted to the higher field. However, the thermal stability and glass transition temperatures were decreased with acidic condition. The highest ionic conductivity of O-nitrochitosan was obtained at ~10-6 cm-1. Overall, the electrochemical property of new O-nitrochitosan showed a good improvement as compared to chitosan and other chitosan derivatives. Hence, O-nitrochitosan is a promising biopolymer electrolyte and has the potential to be applied in electrochemical devices.

摘要

在过去的十年中,人们对各种用途的多糖自然资源给予了极大的关注。在整个工作过程中,有报道称通过化学修饰制备了壳聚糖的新功能,例如用于燃料电池的应用。本文专注于壳聚糖衍生物的合成,即 O-硝基壳聚糖,它是由不同浓度的氢氧化钠合成的,并与硝酸烟雾反应。研究了其作为生物聚合物电解质的潜力。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)分析、核磁共振(NMR)和元素分析(CHNS)分析了硝基取代的情况。利用 X 射线衍射(XRD)对结构进行了表征,并通过差示扫描量热法(DSC)和热重分析(TGA)对其热性能进行了研究。而样品的离子电导率则通过电化学阻抗谱(EIS)进行分析。从红外光谱结果可以看出,在所有 pH 介质中,O-硝基壳聚糖的硝基峰分别位于 1646 和 1355cm-1 处,位置非常明显。在 pH 6 时,通过 CHNS 分析可知,O-硝基壳聚糖的取代度最高,为 0.74,NMR 进一步证明了葡萄糖胺环的 C-6 已移至较高场。然而,在酸性条件下,热稳定性和玻璃化转变温度降低。O-硝基壳聚糖的最高离子电导率在约 10-6cm-1 处获得。总体而言,与壳聚糖和其他壳聚糖衍生物相比,新型 O-硝基壳聚糖的电化学性能有了显著改善。因此,O-硝基壳聚糖是一种很有前途的生物聚合物电解质,有望应用于电化学器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34a8/6377118/722900fd70cb/pone.0212066.g001.jpg

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