An interpenetrating network poly(diethylene glycol carbonate)-based polymer electrolyte for solid state lithium batteries was written by Liu, Xiaochen;Ding, Guoliang;Zhou, Xinhong;Li, Shizhen;He, Weisheng;Chai, Jingchao;Pang, Chunguang;Liu, Zhihong;Cui, Guanglei. And the article was included in Journal of Materials Chemistry A: Materials for Energy and Sustainability in 2017.Related Products of 628-13-7 This article mentions the following:
Polycarbonate-based polymer electrolytes possess superior ionic conductivity at room temperature, higher Li ion transference number and wider electrochem. stability window when compared with conventional poly(ethylene oxide)-based polymer electrolytes. Here, the poly(diethylene glycol carbonate) dimethacrylate macromonomer (PDEC-DMA) was synthesized and the resultant interpenetrating network IPN-PDEC polymer electrolyte was developed via free radical in situ polymerization for polymer electrolyte Li metal batteries. This IPN-PDEC polymer electrolyte exhibited a decent ionic conductivity of 1.64 鑴?10-4 S/cm at room temperature and a wide electrochem. stability window (閳?.5 V vs. Li+/Li). The LiFePO4/IPN-PDEC/Li and LiFe0.2Mn0.8PO4/IPN-PDEC/Li cells delivered excellent rate capability and cycling performance at room temperature An all solid state Li battery was also demonstrated by applying the as-prepared solid polymer electrolyte (SPE-PDEC) at 100鎺? which displayed a superior cycling performance. Therefore, the IPN-PDEC network is a promising polymer electrolyte for solid state Li batteries. In the experiment, the researchers used many compounds, for example, Pyridinehydrochloride (cas: 628-13-7Related Products of 628-13-7).
Pyridinehydrochloride (cas: 628-13-7) belongs to pyridine derivatives. The ring atoms in the pyridine molecule are sp2-hybridized. The nitrogen is involved in the 锜?bonding aromatic system using its unhybridized p orbital. The lone pair is in an sp2 orbital, projecting outward from the ring in the same plane as the 锜?bonds. Several pyridine derivatives play important roles in biological systems. While its biosynthesis is not fully understood, nicotinic acid (vitamin B3) occurs in some bacteria, fungi, and mammals.Related Products of 628-13-7