Kuo Liang-Yin, Roitzheim Christoph, Valencia Helen, Mayer Joachim, Möller Sören, Myung Seung-Taek, Finsterbusch Martin, Guillon Olivier, Fattakhova-Rohlfing Dina, Kaghazchi Payam
Department of Chemical Engineering, Ming Chi University of Technology, No. 84, Gongzhuan Rd., New Taipei City, 243303, Taiwan.
Institute of Energy and Climate Research, Materials Synthesis and Processing (IEK-1), Forschungszentrum Jülich GmbH, 52425, Jülich, Germany.
Small. 2024 Jun;20(26):e2307678. doi: 10.1002/smll.202307678. Epub 2024 Jan 23.
In this work, the effects of dopant size and oxidation state on the structure and electrochemical performance of LiNiCoMnO (NCM811) are investigated. It is shown that doping with boron (B) which has a small ionic radius and an oxidation state of 3+, leads to the formation of a boron oxide-containing surface coating (probably LiBO), mainly on the outer surface of the secondary particles. Due to this effect, boron only slightly affects the size of the primary particle and the initial capacity, but significantly improves the capacity retention. On the other hand, the dopant ruthenium (Ru) with a larger ionic radius and a higher oxidation state of 5+ can be stabilized within the secondary particles and does not experience a segregation to the outer agglomerate surface. However, the Ru dopant preferentially occupies incoherent grain boundary sites, resulting in smaller primary particle size and initial capacity than for the B-doped and pristine NCM811. This work demonstrates that a small percentage of dopant (2 mol%) cannot significantly affect bulk properties, but it can strongly influence the surface and/or grain boundary properties of microstructure and thus the overall performance of cathode materials.
在这项工作中,研究了掺杂剂尺寸和氧化态对LiNiCoMnO(NCM811)结构和电化学性能的影响。结果表明,掺杂离子半径小且氧化态为3+的硼(B)会导致主要在二次颗粒外表面形成含氧化硼的表面涂层(可能是LiBO)。由于这种效应,硼仅对一次颗粒尺寸和初始容量有轻微影响,但显著提高了容量保持率。另一方面,离子半径较大且氧化态为5+的掺杂剂钌(Ru)可在二次颗粒内稳定存在,不会偏析到外部团聚体表面。然而,Ru掺杂剂优先占据非共格晶界位置,导致一次颗粒尺寸和初始容量比B掺杂和原始NCM811更小。这项工作表明,少量掺杂剂(2摩尔%)不会显著影响体相性质,但会强烈影响微观结构的表面和/或晶界性质,从而影响正极材料的整体性能。