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首页> 外文期刊>Advanced materials interfaces >A Critical Review: The Impact of the Battery Electrode Material Substrate on the Composition and Properties of Atomic Layer Deposition (ALD) Coatings
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A Critical Review: The Impact of the Battery Electrode Material Substrate on the Composition and Properties of Atomic Layer Deposition (ALD) Coatings

机译:批判性综述:电池电极材料基板对原子层沉积(ALD)涂层的组成和性能的影响

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摘要

The applications of atomic layer deposition (ALD) technology in the Li-ion field are numerous: from protective coatings to high-surface area active materials and composite electrodes to manufacturing and production of battery materials. The synergy between electrode materials and ALD coatings has been proven repeatedly; however, extensive knowledge of the reasons behind these benefits is needed. The lack of such know-how is partly due to the common deposition and characterization methods applied in the field, where the deposition of films is performed on so-called "simple substrates" (such as copper, silicon, or stainless steel) as opposed to the intended substrate material, which is either a complicated matrix of metal oxides or porous/inactive surfaces. In fact, real interactions between the electrode materials and the ALD coating vary greatly and depend on the substrate material identity. Here, the authors provide the reader with insight and an eye-opening review of the effect of battery electrode substrates on the composition and quality of ALD coatings. They also report the importance of the suitable and most applicable characterization methods for ALD coatings and ALD film-electrode interfaces.
机译:原子层沉积(ALD)技术在锂离子场中的应用是多数:从保护涂层到高表面区域有源材料和复合电极的制造和生产的电池材料。电极材料和ALD涂层之间的协同作用已经反复证明;但是,需要广泛了解这些福利背后的原因。缺乏这样的技术是部分原因是本领域中施加的公共沉积和表征方法,其中薄膜的沉积是在所谓的“简单基板”(如铜,硅或不锈钢)上而不是相对的对于预期的基底材料,其是金属氧化物或多孔/无惰性表面的复杂基质。实际上,电极材料和ALD涂层之间的实际相互作用变化大大变化并取决于基板材料同一性。在这里,作者提供了读者,洞察力和对电池电极基板对ALD涂层组成和质量的影响的眼睛开放综述。他们还报告了ALD涂层和ALD薄膜电极界面的合适和最适用的表征方法的重要性。

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