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Exploring electrochemical methods for 2D precision stress control in nanoscale devices

Exploring electrochemical methods for 2D precision stress control in nanoscale devices

来源:Arxiv_logoArxiv
英文摘要

Tuning the local film stress (and associated strain) provides a universal route towards exerting dynamic control on propagating fields in nanoscale geometries, and engineering controlled interactions between them. The majority of existing techniques are adapted for engineering either uniform stresses or fixed stress gradients, but there is a need to develop methods that can provide independent precision control over the local stress at the nanoscale in the 2D plane. Here, we explore electrochemical absorption of hydrogen in structured palladium thin-film electrodes, and the associated shape-dependent stress to engineer controlled, localized stresses in thin films. We discuss the prospects of this technique for precision dynamic tuning of nanoscale opto-electro-mechanical devices and the development of field-programmable non-volatile set-and-forget architectures. We also outline some of the key challenges that need to be addressed with a view towards incorporating electrochemical stress tuning methods for post-processing foundry devices.

Di Chen、Natasa Vasiljevic、Andrei Sarua、Martin Kuball、Krishna C. Balram

光电子技术半导体技术电子技术应用

Di Chen,Natasa Vasiljevic,Andrei Sarua,Martin Kuball,Krishna C. Balram.Exploring electrochemical methods for 2D precision stress control in nanoscale devices[EB/OL].(2025-05-23)[2025-07-19].https://arxiv.org/abs/2505.17942.点此复制

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