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Interfacial Stress in Physically Transient Layered Structures: An Experimental and Analytical Approach

机译:物理瞬态分层结构中的界面应力:一种实验和分析方法

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摘要

Transient materials are an emerging class of materials that are designed to undergo disintegration at a predefined rate and a predefined manner. Transient materials are utilized in structures and devices to enable device transiency, in particular, transient electronics. While interfacial stress in layered structures is well studied and—to a large extent—well understood, the same in transient layered structures remains a challenging matter to study and understand. This is solely because of the dynamic chemical and physical properties of the transient materials as well as swelling-induced stress that is introduced to the interface due to the mismatch in physical properties of the dissimilar materials forming layers. In this work, interfacial interactions of a particular case of polymeric substrate with lithium titanate electrode coating layer are studied and reported. The structure is analogous to that of the anode in a type of lithium-ion batteries; yet, it can be extended to more general cases of soft electronics. This coordinated experimental–analytical simulation study exhibits formation, accumulation, and propagation of swelling-induced stress through the membrane-coating interface, when in transient mode. Swelling-induced stress as a function of electrode thickness is studied; the analytical data and simulations are verified by experimental results. The stress analysis method can be extended to analyze interfacial stress in a wide range of layered structures with dynamic properties.
机译:瞬态材料是一种新出现的材料类,其被设计成以预定速率和预定方式进行崩解。在结构和器件中使用瞬态材料,以使设备横架,特别是瞬态电子器件能够实现。虽然层状结构的界面应力很好地研究并且在很大程度上理解,但在瞬态层状结构中相同仍然是有挑战性的研究和理解。这仅仅是因为由于不含不同材料的物理性质的不匹配而引入界面的瞬态材料的动态化学和物理性质以及膨胀引起的应力。在该作品中,研究了具有钛酸锂电极涂层的特定情况的特定情况的界面相互作用并报道。该结构类似于锂离子电池类型中的阳极;然而,它可以扩展到更全面的软电子情况。该协调的实验分析模拟研究表现出通过膜涂层界面的形成,积聚和膨胀诱导的应力,当处于瞬态模式时。研究了作为电极厚度的函数的膨胀引起的应力;通过实验结果验证了分析数据和模拟。可以扩展应力分析方法以分析具有动态性质的各种分层结构中的界面应力。

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