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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Preparation and characterization of bio resin natural tannin/poly (vinylidene fluoride): A high dielectric performance nano-composite for electrical storage
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Preparation and characterization of bio resin natural tannin/poly (vinylidene fluoride): A high dielectric performance nano-composite for electrical storage

机译:生物树脂天然单宁/聚(偏二氟乙烯)的制备及表征:蓄电池高介电性能纳米复合材料

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Graphical abstract Display Omitted Abstract We have prepared films of polymer nano-composite (PNC) of poly [vinylidene-fluoride] (PVDF) and bio resin natural tannin (BRNT) nanoparticles. The α and γ electro-active phases were detected, and the addition of BRNT drastically increases the formation of the α-phase. Addition of BRNT produces up to 98% of electro-active phases. Robust electrostatic interactions arise between charges at the BRNT-surfaces, and differences in electron affinity between CH2 and CF2 groups created dielectric dipoles. The addition of BRNT has not only enhanced the formation of the electrically active phases but also makes each dipole in the phase has its specific characteristics for example its own relaxation time. The AC-electrical permittivity showed that the dielectric constant of 10%wt-BRNT nanoparticles in PVDF has a value 44 ε0, which is four times more than the dielectric constant of the as-prepared PVDF films. These data show the importance of these polymers as easy, flexible, and durable energy storage materials. ]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 我们已经制备了聚合物聚合物纳米复合物(PNC)的聚氯化物膜](PVDF)和生物树脂天然单宁(BRNT)纳米颗粒。检测α和γ电活性相位,并且BrNT的添加大大增加了α相的形成。添加BRNT产生高达98%的电活性相。在BRNT-表面的电荷之间产生鲁棒的静电相互作用,并且CH2和CF2基团之间的电子亲和力的差异产生介电偶极子。 BRNT的添加不仅增强了电活性阶段的形成,而且还使相位中的每个偶极子具有其特定特征,例如其自身的弛豫时间。交流电介质显示,PVDF中10%WT-BRNT纳米颗粒的介电常数具有值44ε 0 ,这是电介质的四倍恒定的AS制备的PVDF薄膜。这些数据表明这些聚合物的重要性是简单,柔韧,耐用的能量储存材料。 ]]>

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