Exploring the Elastomer Influence on the Electromechanical Performance of Stretchable Conductors. [PDF]
Stretchable electronics has received major attention in recent years due to the prospects of integrating electronics onto and into the human body. While many studies investigate how different conductive fillers perform in stretchable composites, the effect of different elastomers on composite performance, and the related fundamental understanding of ...
Lienemann S +6 more
europepmc +5 more sources
Predictive design of stretchable electrodes with strain-insensitive performance via robotics- and machine learning-integrated workflow [PDF]
Innovations in wearable electronics and soft robotics hinge significantly on the development of stretchable electrodes. However, a persistent challenge lies in balancing high stretchability, functional performance, and strain insensitivity.
Haochen Yang +11 more
doaj +2 more sources
Abrasion-resistant wearable skins based on bilayered solid/liquid stretchable conductors [PDF]
Soft bioelectronic skins represent next-generation wearable technologies for continuous and unobtrusive biomonitoring, enabled by diverse active materials and topological designs.
Zejun Wang +11 more
doaj +2 more sources
Highly Conductive Liquid Metal Emulsion Gels for Three‐Dimensionally Printed Stretchable Electronics [PDF]
Gallium‐based liquid metals are promising for stretchable electronics due to their inherent deformability and excellent conductivity. However, the lack of a scalable and automated fabrication process has limited their practical applications.
Qianying Lu +8 more
doaj +2 more sources
Printed Stretchable Graphene Conductors for Wearable Technology [PDF]
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durability over many strain cycles are still a great challenge. Here, a graphene nanoplatelet-based colloidal ink utilizing a skin-compatible thermoplastic polyurethane (TPU) binder with adjustable rheology is developed.
Van Hazendonk, Laura S. +11 more
openaire +5 more sources
Stretchable, Transparent, Ionic Conductors [PDF]
Hydrogel Stretch A range of stretchable, conductive materials can be made either by making an electrical conductor more stretchable or by adding an electrical conductor to a stretchable material. Keplinger et al. (p.
Keplinger, Christoph +5 more
openaire +4 more sources
As printed electronics is evolving toward applications in biosensing and wearables, the need for novel routes to fabricate flat, lightweight, stretchable conductors is increasing in importance but still represents a challenge, limiting the actual ...
Kirill Keller +2 more
doaj +1 more source
Stretchable batteries with gradient multilayer conductors [PDF]
A new design for stretchable conductors is developed by stratified composite assembly for future stretchable devices.
Minsu Gu +7 more
openaire +3 more sources
Electromagnetic Reconfiguration Using Stretchable Mechanical Metamaterials
Response to environmental thermomechanical inputs in applications that range from wearable electronics to aerospace structures necessitates agile communication systems driven by reconfigurable electromagnetic structures.
Maria Sakovsky +2 more
doaj +1 more source
Printable Metal-Polymer Conductors for Highly Stretchable Bio-Devices
Summary: Stretchable, biocompatible devices can bridge electronics and biology. However, most stretchable conductors for such devices are toxic, costly, and regularly break/degrade after several large deformations.
Lixue Tang +8 more
doaj +1 more source

