Abstract The conductive polymer poly (3, 4‐ethylenedioxythiophene)(PEDOT), and especially its complex with poly (styrene sulfonate)(PEDOT: PSS), is perhaps the most well …
Skin-like intrinsically stretchable soft electronic devices are essential to realize next- generation remote and preventative medicine for advanced personal healthcare,,–. The …
Advances in flexible and stretchable electronics have enabled an unprecedented level of coupling between electronics and bio-tissues by overcoming obstacles associated with the …
Next‐generation wearable electronics will need to be mechanically flexible and stretchable such that they can be conformally attached onto the human body. Photodetectors that are …
Mechanical deformability underpins many of the advantages of organic semiconductors. The mechanical properties of these materials are, however, diverse, and the molecular …
The mechanical and electronic properties of two-dimensional materials make them promising for use in flexible electronics 1, 2, 3. Their atomic thickness and large-scale …
Resulting from its wide range of beneficial properties, the conjugated conducting polymer poly (3, 4‐ethylenedioxythiophene)(PEDOT) is a promising material in a number of …
Transparent, elastic conductors are essential components of electronic and optoelectronic devices that facilitate human interaction and biofeedback, such as interactive electronics …
Flexible electronics incorporate all the functional attributes of conventional rigid electronics in formats that have been altered to survive mechanical deformations. Understanding the …