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Savov, A.M. (author), Joshi, S. (author), Shafqat, Salman (author), Hoefnagels, Johan (author), Louwerse, M.C. (author), Stoute, R. (author), Dekker, R. (author)
A device for studying the mechanical and electrical behavior of free-standing micro-fabricated metal structures, subjected to a very large deformation, is presented in this paper. The free-standing structures are intended to serve as interconnects in high-density, highly stretchable electronic circuits. For an easy, damage-free handling and...
journal article 2018
document
Joshi, S. (author), Savov, A.M. (author), Shafqat, Salman (author), Dekker, R. (author)
The authors found that oxygen plasma etching of polyimide (PI) with aluminum (Al) as a hard-etch mask results in lightly textured arbitrary shaped “fur-like” residues. Upon investigation, the presence of Al was detected in these residues. Ruling out several causes of metal contamination that were already reported in literature, a new theory for...
journal article 2018
document
Shafqat, Salman (author), Hoefnagels, Johan P.M. (author), Savov, A.M. (author), Joshi, S. (author), Dekker, R. (author), Geers, Marc G.D. (author)
The exciting field of stretchable electronics (SE) promises numerous novel applications, particularly in-body and medical diagnostics devices. However, future advanced SE miniature devices will require high-density, extremely stretchable interconnects with micron-scale footprints, which calls for proven standardized (complementary metal-oxide...
journal article 2017
document
Joshi, S. (author), Savov, A.M. (author), Dekker, R. (author)
This paper focuses on the implementation of a new technique for the fabrication of stretchable electronic patches that can be used for medical applications. The technique is based on the Electronics on Plastics by Laser Release (EPlaR) technology which enables a one-step release of a stack of flexible/stretchable layers incorporating the active...
journal article 2016
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