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Polymerization in Carbone: A Novel Method for the Synthesis of More Sustainable Electrodes and Their Application as Cathodes for Lithium-Organic Energy Storage Materials Based On Vanillin

机译:碳松中的聚合:基于香草林的锂 - 有机能量储存材料合成更可持续电极的新方法及其作为阴极的应用

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摘要

Sustainable energy storage materials are needed to implement necessary transitions to a more sustainable society. Therefore, we present novel vanillin (and thus ultimately possibly lignin)-derived electrode materials for lithium-ion-based energy storage systems. In the present approach, vanillin is first modified in two sustainable steps to afford bisvanillonitrile (BVN). The precursor materials for the electrodes are made from BVN and carbon black and are subsequently treated in the atmosphere of triflic acid in order to polymerize BVN. Used as a cathode material in a lithium-ion-based energy storage device, the resulting material shows capacities up to 90 mAh g(-1) (respective to the whole electrode mass). This extraordinary performance can be attributed to a combination of non-Faradaic and Faradaic charge storage involving quinone units, which are abundantly found in the polymer backbone. In contrast to conventional organic electrode materials, excellent contact to carbon as a conductive additive is established by performing the polymerization in a mixture with carbon (in carbone), allowing the omission of additional unsustainable binder materials. Due to the sustainable synthesis and good performance, such sustainable electrodes may be applied in future energy storage devices.
机译:需要可持续的储能材料来实施更可持续的社会所需的过渡。因此,我们提出了新的香草蛋白(并且因此最终可能是木质素)的基于锂离子的能量存储系统的电极材料。在本方法中,5种可持续步骤首先改性香草蛋白,得到苯乙烷腈(BVN)。电极的前体材料由BVN和炭黑制成,随后在三氟乙酸的气氛中处理以聚合BVN。用作基于锂离子的能量存储装置中的阴极材料,所得材料显示出高达90mAh(-1)的容量(相应于整个电极质量)。这种非凡的性能可以归因于涉及醌单元的非法拉迪奇和法拉第电荷储存的组合,这些电荷存储在聚合物骨架中大量发现。与常规有机电极材料相比,通过在用碳(在碳碳中的混合物中,确定与导电添加剂的优异接触作为导电添加剂,允许省略额外的不可持续的粘合剂材料。由于可持续的合成和良好的性能,这种可持续电极可以应用于未来的能量存储装置。

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