An electrochemical sensing platform based on composite material, consisting of molecularly imprinted polymer coated on graphene oxide (MIP-GO), was developed for selective and sensitive analysis of amoxicillin (AMOX). TheMIP-GOcomposite, which was fabricated by sol-gel polymerization after removal of template molecule, was deposited as a thin film on glassy carbon electrode, and then was electrochemically characterized by cyclic voltammetry and differential pulse voltammetry. The linear response for the determination ofAMOXwas obtained in the concentration range from 5.0x10(-10)to 9.1x10(-7) M under the most proper conditions and the detection limit was found to be 2.94x10(-10) M
Expanding the single molecule detection, enabled by laser-induced graphene (LIG) technology, for por...
A selective and sensitive electrochemical sensor for recognition of profenofos (PFF) was fabricated ...
International audienceThis review aims to elucidate recent developments in electrochemical sensors t...
A voltammetric sensor for determination of amoxicillin (AMX) was developed based on a glutaraldehyde...
A sensitive and selective electrochemical method for the determination of amoxicillin (AMX) was deve...
As new psychoactive substances (commonly known as “the third generation drugs”) have characteristics...
Contamination of antibiotics in water is a major cause of antibiotic resistance (ABR) in pathogens t...
Antibiotics are antibacterial agents applied in human and veterinary medicine. They are also employe...
Sulfamethoxazole (SMX) is a commonly used antibiotic which accumulation can favor the development of...
A nanocomposite was prepared with reduced graphene oxide, gold nanoparticles and an electropolymeriz...
Antibiotics are increasingly used to treat certain bacteria that are harmful to humans. However, the...
In this paper, the characterization and application of a chemically reduced graphene oxide modified ...
The present research describes the design of robust electrochemical sensors based on electro-respons...
In this work, a novel electrochemical sensor was fabricated for determination of amoxicillin in bovi...
Graphene oxide based molecularly imprinted polymer was designed by incorporating vinyltrimethoxysila...
Expanding the single molecule detection, enabled by laser-induced graphene (LIG) technology, for por...
A selective and sensitive electrochemical sensor for recognition of profenofos (PFF) was fabricated ...
International audienceThis review aims to elucidate recent developments in electrochemical sensors t...
A voltammetric sensor for determination of amoxicillin (AMX) was developed based on a glutaraldehyde...
A sensitive and selective electrochemical method for the determination of amoxicillin (AMX) was deve...
As new psychoactive substances (commonly known as “the third generation drugs”) have characteristics...
Contamination of antibiotics in water is a major cause of antibiotic resistance (ABR) in pathogens t...
Antibiotics are antibacterial agents applied in human and veterinary medicine. They are also employe...
Sulfamethoxazole (SMX) is a commonly used antibiotic which accumulation can favor the development of...
A nanocomposite was prepared with reduced graphene oxide, gold nanoparticles and an electropolymeriz...
Antibiotics are increasingly used to treat certain bacteria that are harmful to humans. However, the...
In this paper, the characterization and application of a chemically reduced graphene oxide modified ...
The present research describes the design of robust electrochemical sensors based on electro-respons...
In this work, a novel electrochemical sensor was fabricated for determination of amoxicillin in bovi...
Graphene oxide based molecularly imprinted polymer was designed by incorporating vinyltrimethoxysila...
Expanding the single molecule detection, enabled by laser-induced graphene (LIG) technology, for por...
A selective and sensitive electrochemical sensor for recognition of profenofos (PFF) was fabricated ...
International audienceThis review aims to elucidate recent developments in electrochemical sensors t...