Afshin Rashid
اُستادیار ؛ عضو هیات علمی دانشگاه آزاد اسلامی واحد علوم و تحقیقات تهران
745 یادداشت منتشر شدهThe connection of these sciences with nanoelectronics plays an effective role in the construction of nanostructured devices in various fields of nanotechnology and concepts such as nanotools (such as biological machines)
The connection of these sciences with nanoelectronics plays an effective role in the construction of nanostructured devices in various fields of nanotechnology and concepts such as nanotools (such as biological machines), nanoparticles and nanoscale phenomena (at the nanoscale) that have been promoted through nanobiology. The use of nanotools is to solve problems in the field of biology and medicine. Another main goal in nanotechnology is the development of new tools such as peptoid nanosheets for medical and biological purposes. Another main topic of this field of nanobiology research is for imaging natural biomolecules, biological membranes and tissues. The use of sheet sensors and the application of nanophotonics to manipulate molecular processes in living cells are also topics related to nanobiology.

Nano-biosensor or nano-biosensor
Nano-biosensors or nano-biosensors are a group of nano-sensors. These nano-sensors are designed to react with only a specific substance . The result of this reaction is a signal that a microprocessor can analyze. These sensors are used to detect and quantify species in biological systems.

Electric nano biochips Nano biochip
The biggest advantage of DNA arrays is their high speed and throughput, and they are useful in various genomic applications, including single-stranded RNA - DNA, functional RNA-DNA, and functional RNA-DNA. The most common application of RNA-DNA is to perform a variety of chemical and cellular analyses, separations, and reactions through comprehensive cell profiling .
Conclusion :
The connection of these sciences with nanoelectronics plays an effective role in the construction of nanostructured devices in various fields of nanotechnology and concepts such as nanodevices (such as biological machines), nanoparticles, and nanoscale phenomena (at the nanoscale) that have been promoted through nanobiology. The use of nanodevices is to solve problems in the fields of biology and medicine.
The special nature of carbon in conductive nanotubes is combined with the molecular deficiency of single-walled CNTs to provide them with exceptional material properties such as very high electrical and thermal conductivity in the structure of multi-layered conductive carbon nanotubes
The structure and structure of the production of nanochips and nanotransistors and the length of the jet is proportional to the applied voltage