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一种具有电子云设计的聚亚胺气凝胶隔膜,用于促进锂离子传输以实现稳定的锂金属电池。

A polyimine aerogel separator with electron cloud design to boost Li-ion transport for stable Li metal batteries.

作者信息

Ding Luoyi, Yue Xinyang, Zhang Xinhai, Chen Yuanmao, Liu Jijiang, Shi Zhangqin, Wang Zhiyong, Yan Xuzhou, Liang Zheng

机构信息

Frontiers Science Center for Transformative Molecules, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240, People's Republic of China.

出版信息

Proc Natl Acad Sci U S A. 2023 Dec 19;120(51):e2314264120. doi: 10.1073/pnas.2314264120. Epub 2023 Dec 15.

Abstract

The separator with high Young's modulus can avoid the danger of large-sized dendrites, but regulating the chemical behavior of lithium (Li) at the separator/anode interface can effectively eliminate the dendrite issue. Herein, a polyimine aerogel (PIA) with accurate nitrogen (N) functional design is used as the functional separator in Li metal batteries to promote uniform Li nucleation and suppress the dendrite growth. Specifically, the imine (N1) and protonated tertiary amine (N2) sites in the molecular structure of the PIA are significantly different in electron cloud density (ECD) distribution. The N1 site with higher ECD and the N2 site with lower ECD tend to attract and repulse Li through electrostatic interactions, respectively. This synergy effect of the PIA separator accelerates the interfacial Li diffusion on the Li anode to sustain a uniform two-dimensional Li nucleation behavior. Meanwhile, the well-defined nanochannels of the PIA separator show high affinity to electrolyte and bring uniform Li flux for Li plating/stripping. Consequently, the dendrites are effectively suppressed by the PIA separator in routine carbonate electrolyte, and the Li metal batteries with the PIA separator exhibit high Coulombic efficiency and stable high-rate cycling. These findings demonstrate that the ingenious marriage of special chemical structure designs and hierarchical pores can enable the separator to affect the interfacial Li nucleation behavior.

摘要

具有高杨氏模量的隔膜可以避免大型枝晶带来的危险,但调节隔膜/阳极界面处锂(Li)的化学行为能够有效消除枝晶问题。在此,一种具有精确氮(N)功能设计的聚亚胺气凝胶(PIA)被用作锂金属电池中的功能隔膜,以促进锂的均匀成核并抑制枝晶生长。具体而言,PIA分子结构中的亚胺(N1)和质子化叔胺(N2)位点在电子云密度(ECD)分布上存在显著差异。ECD较高的N1位点和ECD较低的N2位点分别倾向于通过静电相互作用吸引和排斥锂。PIA隔膜的这种协同效应加速了锂阳极上的界面锂扩散,以维持均匀的二维锂成核行为。同时,PIA隔膜中明确的纳米通道对电解质表现出高亲和力,并为锂的电镀/剥离带来均匀的锂通量。因此,PIA隔膜在常规碳酸盐电解质中能有效抑制枝晶,具有PIA隔膜的锂金属电池表现出高库仑效率和稳定的高倍率循环。这些发现表明,特殊化学结构设计和分级孔隙的巧妙结合能够使隔膜影响界面锂的成核行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e65a/10741384/324c499b75c8/pnas.2314264120fig01.jpg

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