![]() ![]() Specifically, this article is focused on conductive ink based on graphene and its hybrid with other materials. In this review, we present general important information and requirements of flexible electronics and stretchable electronics. Therefore, there are several attempts to formulate hybrid inks using graphene with metal nanoparticles or other conductive polymers. However, issues related to its stability, dispersion in water, and annealing temperature often limit its applications. Particularly, graphene-based conductive ink is widely investigated due to its excellent electrical conductivity. Some of these limitations include the use of toxic chemicals, low throughput and complicated fabrication processes, which often make the wider applications of conductive inks less economically feasible. Notably, conductive inks play a major role in printed electronics and even though there are various kinds of conductive inks in the market presently, there are certain challenges that still persist and need to be addressed. This necessitates the development of novel materials through a facile process to facilitate the fabrication of wearable devices with good electronic properties. ![]() Recently, there has been an increasing demand for printed wearable electronics. Printed wearable electronics play a vital role in the electronics industry.
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