Recent Advances in Transparent Electrodes and Their Multimodal Sensing Applications DOI Creative Commons
Majed Althumayri, Ritu Das, Ramu Banavath

et al.

Advanced Science, Journal Year: 2024, Volume and Issue: 11(38)

Published: Aug. 9, 2024

This review examines the recent advancements in transparent electrodes and their crucial role multimodal sensing technologies. Transparent electrodes, notable for optical transparency electrical conductivity, are revolutionizing sensors by enabling simultaneous detection of diverse physical, chemical, biological signals. Materials like graphene, carbon nanotubes, conductive polymers, which offer a balance between transparency, mechanical flexibility, at forefront this development. These integral various applications, from healthcare to solar cell technologies, enhancing sensor performance complex environments. The paper addresses challenges applying these such as need high optoelectronic performance, biocompatibility. It explores new materials innovative techniques overcome hurdles, aiming broaden capabilities devices. provides comparative analysis different electrode materials, discussing applications ongoing development novel systems sensing. exploration offers insights into future highlighting transformative potential bioelectronics

Language: Английский

Smart contact Lenses: From rational design strategies to wearable health monitoring DOI
Fei Han, Pingshu Ge, Fei Wang

et al.

Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: 497, P. 154823 - 154823

Published: Aug. 13, 2024

Language: Английский

Citations

13

Hybrid Integration of Wearable Devices for Physiological Monitoring DOI
Yu Zhang, Xin Ting Zheng, Xiangyu Zhang

et al.

Chemical Reviews, Journal Year: 2024, Volume and Issue: 124(18), P. 10386 - 10434

Published: Aug. 27, 2024

Wearable devices can provide timely, user-friendly, non- or minimally invasive, and continuous monitoring of human health. Recently, multidisciplinary scientific communities have made significant progress regarding fully integrated wearable such as sweat sensors, saliva wound sensors. However, the translation these wearables into markets has been slow due to several reasons associated with poor system-level performance wearables. The wearability consideration for compromises many properties Besides, limited power capacity hinders extended duration. Furthermore, peak-power operations intensive computations quickly create thermal issues in compact form factor that interfere sensor operations. Moreover, are constantly subjected environmental, mechanical, chemical, electrical interferences variables invalidate collected data. This generates need sophisticated data analytics contextually identify, include, exclude points per multisensor fusion enable accurate interpretation. review synthesizes challenges surrounding device integration from three aspects terms hardware, energy, data, focuses on a discussion about hybrid devices, seeks comprehensive guidance designing functional stable devices.

Language: Английский

Citations

13

Smart molecules in ophthalmology: Hydrogels as responsive systems for ophthalmic applications DOI Creative Commons
Merve Kulbay, Kevin Y. Wu,

Doanh Truong

et al.

Smart Molecules, Journal Year: 2024, Volume and Issue: 2(1)

Published: March 1, 2024

Abstract This comprehensive review delves into a unique intersection of hydrogels as smart molecules and their transformative applications in ophthalmology. Beginning with the foundational definition, properties, classification hydrogels, explores synthesis responsive capabilities. Specific examined encompass topical drug delivery, contact lenses, intravitreal ocular adhesives, vitreous substitutes, cell‐based therapy. A methodical analysis, including an overview relevant structures comparative evaluation hydrogel‐based solutions against traditional treatments, is conducted. Additionally, potential constraints, translation challenges, knowledge gaps, research areas are identified. Our approach, guided by extensive literature from 2017 to 2023, illuminates unprecedented opportunities offered along pinpointing for further inquiry facilitate transition clinical practice.

Language: Английский

Citations

12

Advances and Challenges in Wearable Glaucoma Diagnostics and Therapeutics DOI Creative Commons
Ryan Shean, Ning Yu,

Sourish Guntipally

et al.

Bioengineering, Journal Year: 2024, Volume and Issue: 11(2), P. 138 - 138

Published: Jan. 30, 2024

Glaucoma is a leading cause of irreversible blindness, and early detection treatment are crucial for preventing vision loss. This review aims to provide an overview current diagnostic standards, recent medical technological advances, challenges future outlook wearable glaucoma diagnostics therapeutics. Conventional techniques, including the rebound tonometer Goldmann Applanation Tonometer, reliable intraocular pressure (IOP) measurement data at single-interval visits. The Sensimed Triggerfish other emerging contact lenses continuous IOP tracking, which can improve monitoring glaucoma. therapeutic techniques include eye drops laser therapies, while drug-eluting solve patient noncompliance with medications. Theranostic platforms combine capabilities into single device. Advantages these real-time personalized medication dosing. While there many development therapeutics, technologies hold great potential enhancing management by providing monitoring, improving adherence, reducing disease burden on patients healthcare systems. Further research will be essential optimizing outcomes.

Language: Английский

Citations

9

Recent Advances in Transparent Electrodes and Their Multimodal Sensing Applications DOI Creative Commons
Majed Althumayri, Ritu Das, Ramu Banavath

et al.

Advanced Science, Journal Year: 2024, Volume and Issue: 11(38)

Published: Aug. 9, 2024

This review examines the recent advancements in transparent electrodes and their crucial role multimodal sensing technologies. Transparent electrodes, notable for optical transparency electrical conductivity, are revolutionizing sensors by enabling simultaneous detection of diverse physical, chemical, biological signals. Materials like graphene, carbon nanotubes, conductive polymers, which offer a balance between transparency, mechanical flexibility, at forefront this development. These integral various applications, from healthcare to solar cell technologies, enhancing sensor performance complex environments. The paper addresses challenges applying these such as need high optoelectronic performance, biocompatibility. It explores new materials innovative techniques overcome hurdles, aiming broaden capabilities devices. provides comparative analysis different electrode materials, discussing applications ongoing development novel systems sensing. exploration offers insights into future highlighting transformative potential bioelectronics

Language: Английский

Citations

9