Diving into Sweat: Advances, Challenges, and Future Directions in Wearable Sweat Sensing
Sweat analysis has advanced from diagnosing cystic fibrosis and testing for illicit drugs to
noninvasive monitoring of health biomarkers. This article introduces the rapid development …
noninvasive monitoring of health biomarkers. This article introduces the rapid development …
Multifunctional electrochromic materials and devices recent advances and future potential
The growing demand for multifunctional optoelectronic devices has positioned the
integration of electrochromism (EC) with other functionalities at the forefront of research in …
integration of electrochromism (EC) with other functionalities at the forefront of research in …
Research Progress of Flexible Electronic Devices Based on Electrospun Nanofibers
S Wang, P Fan, W Liu, B Hu, J Guo, Z Wang, S Zhu… - ACS …, 2024 - ACS Publications
Electrospun nanofibers have become an important component in fabricating flexible
electronic devices because of their permeability, flexibility, stretchability, and conformability …
electronic devices because of their permeability, flexibility, stretchability, and conformability …
Recent Advances in the 3D Printing of Conductive Hydrogels for Sensor Applications: A Review
Conductive hydrogels, known for their flexibility, biocompatibility, and conductivity, have
found extensive applications in fields such as healthcare, environmental monitoring, and soft …
found extensive applications in fields such as healthcare, environmental monitoring, and soft …
Flexible yet Durable Microneedle Electrodes Based on Nanowire-Embedded Polyimide for Precise Wearable Electrophysiological Monitoring
L **ng, L Liu, R **, H Zhang, Y Shen… - … Applied Materials & …, 2024 - ACS Publications
A precise recording of electrophysiological signals requires high-performance flexible
bioelectrodes to build a robust skin interface. The past decade has witnessed encouraging …
bioelectrodes to build a robust skin interface. The past decade has witnessed encouraging …
Scalable Integration of High Sensitivity Strain Sensors Based on Silicon Nanowire Spring Array Directly Grown on Flexible Polyimide Films
X Song, Y Gu, S Wang, J Fan, J An, L Yan, B Sun… - Nano Letters, 2025 - ACS Publications
The growth and integration of position-controlled, morphology-programmable silicon
nanowires (SiNWs), directly upon low-cost polymer substrates instead of postgrowth …
nanowires (SiNWs), directly upon low-cost polymer substrates instead of postgrowth …
Interfacial Iontronics in Bioelectronics: From Skin-Attachable to Implantable Devices
EK Boahen, JH Kim, H Choi, Z Kong… - Korean Journal of …, 2024 - Springer
Bioelectronic devices represent a transformative advancement in medical technology,
redefining diagnosis, treatment, and monitoring of various health conditions. These devices …
redefining diagnosis, treatment, and monitoring of various health conditions. These devices …
Emerging Combination of Hydrogel and Electrochemical Biosensors
Electrochemical sensors are among the most promising technologies for biomarker
research, with outstanding sensitivity, selectivity, and rapid response capabilities that make …
research, with outstanding sensitivity, selectivity, and rapid response capabilities that make …
3D printable double-network ionogels with a multi-angle zigzag pattern for enhanced linearity and sensitivity of stretchable ionic sensors
MS Kim, CY Lee, DH Park, JE Lee, KG Cho… - Chemical Engineering …, 2025 - Elsevier
With a considerable attention in wearable smart electronic devices, stretchable sensors are
of great significance to meet the requirements of monitoring various human motions …
of great significance to meet the requirements of monitoring various human motions …
Conductive polyacrylamide/pullulan/ammonium sulfate hydrogels with high toughness, low-hysteresis and tissue-like modulus as flexible strain sensors
H Ding, B Wang, X Yang, J Liu, W Sang, X Li… - International Journal of …, 2025 - Elsevier
Conductive hydrogels have great potential for applications in flexible wearable sensors due
to the combination of biocompatibility, mechanical flexibility and electrical conductivity …
to the combination of biocompatibility, mechanical flexibility and electrical conductivity …