On the scalability and stability of the green synthesis
Research gap analysis derived from 3 chemistry papers in our local library.
The gap
Further studies on the scalability and stability of the green synthesis route. Investigation of the hydrogel's potential applications in wound healing and biosensing. Development of wearable therapeutic systems using the hybrid hydrogel.
Evidence profile
Sourced from the abstract and future-work section and stated research gap of the source papers, classified as general, drawn from work published between 2024 and 2026, spanning 2 journals. Those papers have been cited 40 times in total.
Research trend
Established — well-defined area with open sub-problems.
Supporting evidence — 3 representative gaps
- Antidehydration and Stable Mechanical Properties during the Phase Transition of the PNIPAM-Based Hydrogel for Body-Temperature-Monitoring Sensors (2024) · ACS Applied Materials & Interfaces · cited 40× · doi
However, an open question is whether and how the hydrogel design can prevent adhesive performance loss caused by phase-transition-induced dehydration and unstable mechanical properties between devices and human skin and reduce interfacial failure.
generalabstractKeywords: open question whether hydrogel design prevent adhesive performance loss caused phase transition induced dehydration unstable - GREEN SYNTHESIS OF CONDUCTIVE HYDROGELS INCORPORATING SILVER NANOPARTICLES FROM CURCUMA LONGA FOR TRANSDERMAL DICLOFENAC DELIVERY (2026) · doi
Further studies on the scalability and stability of the green synthesis route. Investigation of the hydrogel's potential applications in wound healing and biosensing. Development of wearable therapeutic systems using the hybrid hydrogel.
generalfuture-work sectionevidence 5/5Keywords: further studies scalability stability green synthesis route investigation - Zr4+-Coordinated Highly Stretchable and Conductive Silk Fibroin/PPy Hydrogel for Flexible Wearable Sensing (2026) · Polymers · doi
Poor mechanical strength and unstable sensitivity of conductive hydrogels. Limited stretchability and poor structural durability of existing hydrogels. Need for a mechanically robust and electrically stable conductive hydrogel for wearable sensors.
generalstated research gapevidence 5/5Keywords: poor mechanical strength unstable sensitivity conductive hydrogels limited
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