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P 掺杂多孔碳载体促进红磷的储锂性能。

P-Doping a Porous Carbon Host Promotes the Lithium Storage Performance of Red Phosphorus.

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes, Tianjin Key Laboratory of Advanced Fibers and Energy Storage, School of Material Science and Engineering, Tiangong University, No. 399 BinShuiXi Road, Xiqing District, Tianjin 300387, China.

State Key Laboratory of Organic-Inorganic Composites, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, No. 15 North Third Ring East Road, Chaoyang District, Beijing 100029, China.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 8;15(9):11713-11722. doi: 10.1021/acsami.2c21043. Epub 2023 Feb 21.

Abstract

Red phosphorus (RP) is a promising anode material for use in lithium-ion batteries (LIBs) due to its high theoretical specific capacity (2596 mA h g). However, the practical use of RP-based anodes has been challenged by the material's low intrinsic electrical conductivity and poor structural stability during lithiation. Here, we describe a phosphorus-doped porous carbon (P-PC) and disclose how the dopant improves the Li storage performance of RP that was incorporated into the P-PC (designated as RP@P-PC). P-doping porous carbon was achieved using an in situ method wherein the heteroatom was added as the porous carbon was being formed. The phosphorus dopant effectively improves the interfacial properties of the carbon matrix as subsequent RP infusion results in high loadings, small particle sizes, and uniform distribution. In half-cells, an RP@P-PC composite was found to exhibit outstanding performance in terms of the ability to store and utilize Li. The device delivered a high specific capacitance and rate capability (1848 and 1111 mA h g at 0.1 and 10.0 A g, respectively) as well as excellent cycling stability (1022 mA h g after 800 cycles at 2.0 A g). Exceptional performance metrics were also measured when the RP@P-PC was used as an anode material in full cells that contained lithium iron phosphate as the cathode material. The methodology described can be extended to the preparation of other P-doped carbon materials that are employed in contemporary energy storage applications.

摘要

红磷(RP)由于其高理论比容量(2596 mA h g-1),是一种很有前途的锂离子电池(LIB)用阳极材料。然而,由于其本征电导率低和在锂化过程中结构稳定性差,基于 RP 的阳极的实际应用受到了挑战。在这里,我们描述了一种磷掺杂多孔碳(P-PC),并揭示了掺杂剂如何改善掺入 P-PC 的 RP 的 Li 存储性能(命名为 RP@P-PC)。通过原位法实现了 P 掺杂多孔碳,其中将杂原子作为多孔碳形成时添加。磷掺杂剂有效地改善了碳基质的界面性能,因为随后注入 RP 导致高负载、小颗粒尺寸和均匀分布。在半电池中,发现 RP@P-PC 复合材料在储存和利用 Li 的能力方面表现出优异的性能。该器件表现出高比电容和倍率性能(在 0.1 和 10.0 A g-1 时分别为 1848 和 1111 mA h g-1)以及出色的循环稳定性(在 2.0 A g-1 时 800 次循环后为 1022 mA h g-1)。当 RP@P-PC 用作包含磷酸铁锂作为阴极材料的全电池的阳极材料时,也测量了出色的性能指标。所描述的方法可以扩展到制备用于当代储能应用的其他 P 掺杂碳材料。

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