The increasing demand to mitigate the alarming effects of the emission of ammonia (NH3) on human health and the environment has highlighted the growing attention to the design of reliable and effective sensing technologies using novel materials and unique nanocomposites with tunable functionalities. Among the state-of-the-art ammonia detection materials, graphene-based polymeric nanocomposites have gained significant attention. Despite the ever-increasing number of publications on graphene-based polymeric nanocomposites for ammonia detection, various understandings and information regarding the process, mechanisms, and new material components have not been fully explored. Therefore, this review summarises the recent progress of graphene-bas...
Ammonia (NH3) is a vital compound in diversified fields, including agriculture, automotive, chemical...
Resistive-type polyaniline (PANI) based sensing film was fabricated by a simple in-situ polymerizati...
In this paper, graphene/mica and graphene/SiO2 based ammonia gas sensors are compared. It is found t...
The outstanding versatility of graphene for surface functionalization has been exploited by its deco...
Because of intimidating toxicity of ammonia, development of ultra-sensitive, as well as portable and...
Graphene-based nanocomposites are largely explored for the development of sensing devices due to the...
The more sensitive and rapid ammonia gas sensors were prepared with nanocomposites of polypyrrole (P...
In this work, we design a new hybrid sensor in which graphene (G) combined with an ultrathin polypyr...
A hybrid structure gas sensor of reduced graphene oxide (RGO) decorated graphene (RGO-Gr) is designe...
In this paper, we presented the fabrication and properties of new ammonia (NH) sensors with sensitiv...
We report an ammonia (NH3) sensor in which a ultrathin polypyrrole (PPy) layer is synthesized on red...
The graphene nanoplate (GN)-polyaniline (PANI) composite was developed via in-situ polymerization me...
Nowadays, the emergence of Radio-Frequency Identification (RFID) devices at costs comparable to barc...
Over the past decade, ammonia gas sensors have received significant attention as robust platforms fo...
In this paper, a side polished multimode plastic optical fiber gas sensor coated with graphene/polya...
Ammonia (NH3) is a vital compound in diversified fields, including agriculture, automotive, chemical...
Resistive-type polyaniline (PANI) based sensing film was fabricated by a simple in-situ polymerizati...
In this paper, graphene/mica and graphene/SiO2 based ammonia gas sensors are compared. It is found t...
The outstanding versatility of graphene for surface functionalization has been exploited by its deco...
Because of intimidating toxicity of ammonia, development of ultra-sensitive, as well as portable and...
Graphene-based nanocomposites are largely explored for the development of sensing devices due to the...
The more sensitive and rapid ammonia gas sensors were prepared with nanocomposites of polypyrrole (P...
In this work, we design a new hybrid sensor in which graphene (G) combined with an ultrathin polypyr...
A hybrid structure gas sensor of reduced graphene oxide (RGO) decorated graphene (RGO-Gr) is designe...
In this paper, we presented the fabrication and properties of new ammonia (NH) sensors with sensitiv...
We report an ammonia (NH3) sensor in which a ultrathin polypyrrole (PPy) layer is synthesized on red...
The graphene nanoplate (GN)-polyaniline (PANI) composite was developed via in-situ polymerization me...
Nowadays, the emergence of Radio-Frequency Identification (RFID) devices at costs comparable to barc...
Over the past decade, ammonia gas sensors have received significant attention as robust platforms fo...
In this paper, a side polished multimode plastic optical fiber gas sensor coated with graphene/polya...
Ammonia (NH3) is a vital compound in diversified fields, including agriculture, automotive, chemical...
Resistive-type polyaniline (PANI) based sensing film was fabricated by a simple in-situ polymerizati...
In this paper, graphene/mica and graphene/SiO2 based ammonia gas sensors are compared. It is found t...