Recent Advances in Potential Biomedical Applications of MXene‐Based Hydrogels DOI
Ali Hamzehlouy, Masoud Tavakoli Dare,

Farangis Shahi

et al.

Polymers for Advanced Technologies, Journal Year: 2024, Volume and Issue: 35(12)

Published: Nov. 29, 2024

ABSTRACT MXene‐based hydrogels represent a significant advancement in biomedical material science, leveraging the unique properties of 2D MXenes and versatile functionality hydrogels. This review discusses recent developments integration into hydrogel matrices, focusing on their applications such as wound healing, drug delivery, antimicrobial activity, tissue engineering, biosensing. MXenes, due to remarkable electrical conductivity, mechanical robustness, tunable surface chemistry, enhance properties, responsiveness environmental stimuli. Specifically, have shown great promise accelerating healing through photothermal effects, delivering drugs controlled manner, serving antibacterial agents. Their also enables targeted cancer therapies, including chemodynamic facilitated by high conductivity properties. Despite promising progress, challenges ensuring biocompatibility optimizing synthesis for large‐scale production remain. aims provide comprehensive overview current state applications, highlighting ongoing advancements potential future directions these multifunctional materials.

Language: Английский

An ultrasensitive flexible biosensor enabled by high-performance graphene field-effect transistors with defect-free van der Waals contacts for breast cancer miRNA fast detection DOI
Mingyuan Sun, Shuai Wang, Yunhong Zhang

et al.

Talanta, Journal Year: 2025, Volume and Issue: unknown, P. 127637 - 127637

Published: Jan. 1, 2025

Language: Английский

Citations

2

A microneedle sensor for in-vivo sodium ion detection in plants DOI

Cheng-Xiao Fan,

Zhuo Wang, Zhi-Hao Wang

et al.

Analytica Chimica Acta, Journal Year: 2025, Volume and Issue: 1352, P. 343892 - 343892

Published: March 7, 2025

Language: Английский

Citations

0

Advanced nanomaterials for health monitoring and diagnostics in next-generation wearable sensors DOI

Murugesan Chandran,

Mekala Veerapandian,

Barkavi Dhanasekaran

et al.

Materials Science and Engineering R Reports, Journal Year: 2025, Volume and Issue: 165, P. 101015 - 101015

Published: May 14, 2025

Language: Английский

Citations

0

CuO-embedded laser-induced graphene microfluidic system for continuous, non-invasive, and cost-effective glucose monitoring in sweat DOI
Ming‐Jai Su, Xueye Chen, Lixia Yang

et al.

Chemical Engineering Science, Journal Year: 2025, Volume and Issue: unknown, P. 121839 - 121839

Published: May 1, 2025

Language: Английский

Citations

0

Multimodal sensing platform based on Fe3O4/DEX/PDA@Au(Raman reporters)@Au nanocomposites for sweat biomarkers monitoring DOI
Zhiqi Zhao,

Jiaxing Cheng,

Yanfei Ren

et al.

Biosensors and Bioelectronics, Journal Year: 2025, Volume and Issue: unknown, P. 117629 - 117629

Published: May 1, 2025

Language: Английский

Citations

0

Deep Learning-Assisted 3D Pressure Sensors for Control of Unmanned Aerial Vehicles DOI
Junlai Jiang, Hao Gu,

Ruixiang Xu

et al.

ACS Applied Materials & Interfaces, Journal Year: 2025, Volume and Issue: unknown

Published: May 15, 2025

Accurately and reliably detecting recognizing human body movements in real time, relaying appropriate commands to the machine, have substantial implications for virtual reality, remote control, robotics applications. Nonetheless, most contemporary wearable analysis control systems attain action recognition by setting sensor thresholds. In routine usage, stringent trigger conditions facilitate inadvertent contact, resulting a poorer user experience. Here, we created intelligent gesture system utilizing multilayer microstructure composite thin film piezoresistive sensing array deep learning techniques. The exhibits ultrahigh sensitivity (ranging from 0-6 kPa 412.2 kPa-1) rapid response times (loading at 40 ms, recovery 30 ms). detected gestures are classified recognized via convolutional neural network, achieving accuracy of 97.5%. Ultimately, altitude an unmanned aerial vehicle is accomplished through wireless signal transmission reception. To achieve visualization complete gesture-controlled flight process, developed intuitive interface real-time display video surveillance. implementation this introduces novel mechanism human-machine interaction, expands applications robotic technology, offers innovative concepts practical pathways reality.

Language: Английский

Citations

0

A Battery-Free Wearable Sweat Lactate Sensing Patch for Assessing Muscle Fatigue and Recovery DOI
Jiachen Zhu, Tao Wang, Hai Li

et al.

Biosensors and Bioelectronics, Journal Year: 2025, Volume and Issue: 286, P. 117616 - 117616

Published: May 21, 2025

Language: Английский

Citations

0

Recent Advances in Potential Biomedical Applications of MXene‐Based Hydrogels DOI
Ali Hamzehlouy, Masoud Tavakoli Dare,

Farangis Shahi

et al.

Polymers for Advanced Technologies, Journal Year: 2024, Volume and Issue: 35(12)

Published: Nov. 29, 2024

ABSTRACT MXene‐based hydrogels represent a significant advancement in biomedical material science, leveraging the unique properties of 2D MXenes and versatile functionality hydrogels. This review discusses recent developments integration into hydrogel matrices, focusing on their applications such as wound healing, drug delivery, antimicrobial activity, tissue engineering, biosensing. MXenes, due to remarkable electrical conductivity, mechanical robustness, tunable surface chemistry, enhance properties, responsiveness environmental stimuli. Specifically, have shown great promise accelerating healing through photothermal effects, delivering drugs controlled manner, serving antibacterial agents. Their also enables targeted cancer therapies, including chemodynamic facilitated by high conductivity properties. Despite promising progress, challenges ensuring biocompatibility optimizing synthesis for large‐scale production remain. aims provide comprehensive overview current state applications, highlighting ongoing advancements potential future directions these multifunctional materials.

Language: Английский

Citations

2