![]() This also concludes the current associated challenges as well as future perspectives for the analysis of RS in the environment. This review article intimates significant advancement in developing the enzymatic and non-enzymatic electrochemical sensors based on different nanomaterials for the detection of resorcinol (RS) in the absence or presence of other phenolic compounds. ![]() Advancement in nanotechnology has urged the use of different types of nanomaterials as an excellent electrode material to amplify the electrochemical detection in terms of long-term stability and electrocatalytic activity of the electrochemical sensors in addition to fulfill the aforementioned desires. In recent years, cost-effective, selective, portable, sensitive, and rapid sensing devices must be developed in urgent need. The ever-increasing environmental pollution is a severe threat to the ecosystem's healthy sustainability, and therefore environmental monitoring of these pollutants has become a burning issue throughout the world.
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