Hydrogel-based epidermal electrodes attract widespread attention in health monitoring and human-machine interfaces for their good biocompatibility, skin-matched Young's modulus, and stable in situ electrophysiological recording performance. However, it is difficult to make the exact conformal attachment between skin and electrodes because of the hair, wrinkles, as well as complex, curved contours of the skin. This also results in signal distortion and large noise. Here, a body temperature enhanced skin-adhesive epidermal electrode is proposed based on non-covalent cross-linked network ionic hydrogel. The ionic hydrogel is fabricated by the polyvinyl alcohol, branched polyethyleneimine, and calcium chloride (CaCl2), which demonstrates impres...
Although ion gels are attractive sensing materials for deformable epidermal sensors or implantable d...
Conductive hydrogels with high stretchability can extend their applications as a flexible electrode ...
Conductive hydrogel combined with Ag/AgCl electrode is widely used in the acquisition of bio-signals...
Hydrogel-based epidermal electrodes attract widespread attention in health monitoring...
Skin has a dynamic surface and offers essential information through biological signals originating f...
Abstract Hydrogels are a widely used ionic conductor in on-skin electronic and iontronic devices. Ho...
Ionic gel-based electronic devices are essential in future healthcare/biomedical applications, such ...
Preparation‐free and skin compliant biopotential electrodes with high recording quality enable weara...
Conventional epidermal bioelectronics usually do not conform well with natural skin surfaces and are...
Soft-ionic materials with biocompatibility and 3D printability are needed to develop next-generation...
Summary: Skin-like electronics are developing rapidly to realize a variety of applications such as w...
Noninvasive on-skin electrodes record the electrical potential changes from human skin, which reflec...
The construction of a surface-wrinkled ionic conductive hydrogel with highly stretchable and healabl...
The skin, as the largest organ of human body, can use ions as information carriers to convert multip...
With the rising demand for wearable, multifunctional, and flexible electronics, plenty of efforts ai...
Although ion gels are attractive sensing materials for deformable epidermal sensors or implantable d...
Conductive hydrogels with high stretchability can extend their applications as a flexible electrode ...
Conductive hydrogel combined with Ag/AgCl electrode is widely used in the acquisition of bio-signals...
Hydrogel-based epidermal electrodes attract widespread attention in health monitoring...
Skin has a dynamic surface and offers essential information through biological signals originating f...
Abstract Hydrogels are a widely used ionic conductor in on-skin electronic and iontronic devices. Ho...
Ionic gel-based electronic devices are essential in future healthcare/biomedical applications, such ...
Preparation‐free and skin compliant biopotential electrodes with high recording quality enable weara...
Conventional epidermal bioelectronics usually do not conform well with natural skin surfaces and are...
Soft-ionic materials with biocompatibility and 3D printability are needed to develop next-generation...
Summary: Skin-like electronics are developing rapidly to realize a variety of applications such as w...
Noninvasive on-skin electrodes record the electrical potential changes from human skin, which reflec...
The construction of a surface-wrinkled ionic conductive hydrogel with highly stretchable and healabl...
The skin, as the largest organ of human body, can use ions as information carriers to convert multip...
With the rising demand for wearable, multifunctional, and flexible electronics, plenty of efforts ai...
Although ion gels are attractive sensing materials for deformable epidermal sensors or implantable d...
Conductive hydrogels with high stretchability can extend their applications as a flexible electrode ...
Conductive hydrogel combined with Ag/AgCl electrode is widely used in the acquisition of bio-signals...