Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Stretchable Systems

View through CrossRef
Stretchable electronics is one of the transformative pillars of future flexible electronics. As a result, the research on new passive and active materials, novel designs, and engineering approaches has attracted significant interest. Recent studies have highlighted the importance of new approaches that enable the integration of high-performance materials, including, organic and inorganic compounds, carbon-based and layered materials, and composites to serve as conductors, semiconductors or insulators, with the ability to accommodate electronics on stretchable substrates. This Element presents a discussion about the strategies that have been developed for obtaining stretchable systems, with a focus on various stretchable geometries to achieve strain invariant electrical response, and summarises the recent advances in terms of material research, various integration techniques of high-performance electronics. In addition, some of the applications, challenges and opportunities associated with the development of stretchable electronics are discussed.
Title: Stretchable Systems
Description:
Stretchable electronics is one of the transformative pillars of future flexible electronics.
As a result, the research on new passive and active materials, novel designs, and engineering approaches has attracted significant interest.
Recent studies have highlighted the importance of new approaches that enable the integration of high-performance materials, including, organic and inorganic compounds, carbon-based and layered materials, and composites to serve as conductors, semiconductors or insulators, with the ability to accommodate electronics on stretchable substrates.
This Element presents a discussion about the strategies that have been developed for obtaining stretchable systems, with a focus on various stretchable geometries to achieve strain invariant electrical response, and summarises the recent advances in terms of material research, various integration techniques of high-performance electronics.
In addition, some of the applications, challenges and opportunities associated with the development of stretchable electronics are discussed.

Related Results

Stretchable Printed Circuit Board Meets Stretchable Light Emitting Gallium Nitride
Stretchable Printed Circuit Board Meets Stretchable Light Emitting Gallium Nitride
The human body is a dynamic three-dimensional soft entity. Metal lines in commercially available electronic devices are mechanically flexible yet insufficiently deformable, enablin...
A flexible and stretchable photonic crystal sensor for biosensing and tactile sensing
A flexible and stretchable photonic crystal sensor for biosensing and tactile sensing
Abstract A flexible and stretchable photonic crystal that can be used for biosensing and tactile sensing is designed and demonstrated. The nanograting of a flexible and str...
Stretchable electrodes for biopotential measurements in wearable patches
Stretchable electrodes for biopotential measurements in wearable patches
Abstract Soft, stretchable, and flexible electrodes offer a unique and nonintrusive option to monitor essential biopotential signals from the skin, which can be rela...
Nanomeshed Si nanomembranes
Nanomeshed Si nanomembranes
AbstractOne of the main challenges in stretchable electronics is to achieve high-performance stretchable semiconductors. Here, we introduce an innovative concept of nanomeshed semi...
Stretchable phosphorescent polymers by multiphase engineering
Stretchable phosphorescent polymers by multiphase engineering
AbstractStretchable phosphorescence materials potentially enable applications in diverse advanced fields in wearable electronics. However, achieving room-temperature phosphorescenc...
A Stretchable and Conformable Sensor Fabricated by PVDF Film for human dynamic monitoring
A Stretchable and Conformable Sensor Fabricated by PVDF Film for human dynamic monitoring
Abstract With the increasing demand for self-adaptive electronics, stretchable and conformable sensors with merits of high sensitivity, stretchability, and self-adhesive ha...

Back to Top