TY - JOUR
T1 - Comparison and evaluation of the performance of graphene-based biosensors
AU - Abdelbasset, Walid Kamal
AU - Jasim, Saade Abdalkareem
AU - Bokov, Dmitry Olegovich
AU - Oleneva, Maria Sergeevna
AU - Islamov, Anvar
AU - Hammid, Ali Thaeer
AU - Mustafa, Yasser Fakri
AU - Yasin, Ghulam
AU - Alguno, Arnold C.
AU - Kianfar, Ehsan
N1 - Publisher Copyright:
© 2022, The Author(s), under exclusive licence to Korean Carbon Society.
PY - 2022/6
Y1 - 2022/6
N2 - Biosensors are a group of measurement systems and their design is based on the selective identification of analyses based on biological components and physical and chemical detectors. Biosensors consist of three components: biological element, detector, and converter. The design of biosensors in various fields of biological sciences, medicine has expanded significantly. Biosensor technology actually represents a combination of biochemistry, molecular biology, chemistry, physics, electronics, and telecommunications. A biosensor actually consists of a small sensor and biological material fixed on it. Because biosensors are a powerful tool for identifying biological molecules, today they are used in various medical sciences, chemical industry, food industry, environmental monitoring, pharmaceutical production, health, etc. In fact, these sensors are a powerful tool to identify biological molecules. In fact, biosensors are analytical tools that can use biological intelligence to detect and react with a compound or compounds, and thus create a chemical, optical, or electrical message. The basis of a biosensor is to convert a biological response into a message. In this category, the use of telecommunication engineering technology and electromagnetic waves and frequency and radio spectrum is growing more and more to detect, measure, and determine the desired parameters in microbiology and laboratory sciences. The use of radio, optical, electromagnetic, ultrasonic, and infrared wave detection technology is part of the applications of telecommunication science in this field. Even image and audio processing systems have been instrumental in the discussion of biosensors in microbiology. The science of using fiber optics and waveguides, micro-strip antennas, and microelectromechanical technology is also very efficient in the construction and design of these biosensors.
AB - Biosensors are a group of measurement systems and their design is based on the selective identification of analyses based on biological components and physical and chemical detectors. Biosensors consist of three components: biological element, detector, and converter. The design of biosensors in various fields of biological sciences, medicine has expanded significantly. Biosensor technology actually represents a combination of biochemistry, molecular biology, chemistry, physics, electronics, and telecommunications. A biosensor actually consists of a small sensor and biological material fixed on it. Because biosensors are a powerful tool for identifying biological molecules, today they are used in various medical sciences, chemical industry, food industry, environmental monitoring, pharmaceutical production, health, etc. In fact, these sensors are a powerful tool to identify biological molecules. In fact, biosensors are analytical tools that can use biological intelligence to detect and react with a compound or compounds, and thus create a chemical, optical, or electrical message. The basis of a biosensor is to convert a biological response into a message. In this category, the use of telecommunication engineering technology and electromagnetic waves and frequency and radio spectrum is growing more and more to detect, measure, and determine the desired parameters in microbiology and laboratory sciences. The use of radio, optical, electromagnetic, ultrasonic, and infrared wave detection technology is part of the applications of telecommunication science in this field. Even image and audio processing systems have been instrumental in the discussion of biosensors in microbiology. The science of using fiber optics and waveguides, micro-strip antennas, and microelectromechanical technology is also very efficient in the construction and design of these biosensors.
KW - Biological
KW - Biosensors
KW - Chemical
KW - Electrical
KW - Graphene
KW - Microbiology
KW - Two-dimensional
UR - http://www.scopus.com/inward/record.url?scp=85127221312&partnerID=8YFLogxK
U2 - 10.1007/s42823-022-00338-6
DO - 10.1007/s42823-022-00338-6
M3 - Article
AN - SCOPUS:85127221312
SN - 1976-4251
VL - 32
SP - 927
EP - 951
JO - Carbon Letters
JF - Carbon Letters
IS - 4
ER -