These devices, which include transistors and diodes, can be used in nanometer robots, nanoelectromechanical systems (NEMS), microelectromechanical systems (MEMS), and microfluidic devices

10 مهر 1405 - خواندن 4 دقیقه - 23 بازدید

These devices, which include transistors and diodes, can be used in nanometer robots, nanoelectromechanical systems (NEMS), microelectromechanical systems (MEMS), and microfluidic devices



The structure of nano assemblers is one of the properties of nanoparticles with a high surface to volume ratio of these materials. Using this property, powerful catalysts can be produced in nanometer terms. These nanocatalysts will greatly increase the efficiency of chemical reactions and also significantly prevent the production of waste materials in reactions. Nanoparticles in the production of other materials can increase their strength or reduce their weight. Increase their chemical and thermal resistance and change their reaction to light and other radiations. By using nanoparticles, the ratio of strength to weight of composite materials will increase greatly.



These devices, which include transistors and diodes, can be used in nanometer robots, nanoelectromechanical systems (NEMS), microelectromechanical systems (MEMS), and microfluidic devices. The mechanical action required to initiate deformation can be the pressing of a key, the pressure caused by the passage of a fluid, the stretching of muscles, or the movement of a robot's limbs.

Note: In smart nano-structures, the concept of Nano -assemblies   is summed up in all the information and codes necessary to produce something similar to itself. We have a very small machine that knows how to produce something similar to itself , which is interpreted as a "nano-assembler" in nanoscience. will be

Nano assemblers are composed of nanoparticles and the first effect of reducing the size of the particles is to increase the surface area, the increase in the ratio of the surface area to the volume of nanoparticles causes that the atoms located on the surface have a much greater effect than the atoms inside the volume of the particles on the physical properties of the particles. Have. This feature greatly increases the reactivity of nanoparticles.



The structure of nano assemblers is one of the properties of nanoparticles with a high surface to volume ratio of these materials. Using this property, powerful catalysts can be produced in nanometer terms. These nanocatalysts will greatly increase the efficiency of chemical reactions and also significantly prevent the production of waste materials in reactions. Nanoparticles in the production of other materials can increase their strength or reduce their weight. Increase their chemical and thermal resistance and change their reaction to light and other radiations. By using nanoparticles, the ratio of strength to weight of composite materials will increase greatly.These devices, which include transistors and diodes, can be used in nanometer robots, nanoelectromechanical systems (NEMS), microelectromechanical systems (MEMS), and microfluidic devices. The mechanical action required to initiate deformation can be the pressing of a key, the pressure caused by the passage of a fluid, the stretching of muscles, or the movement of a robot's limbs.



Note: Compounds (III-V)  The main factor in nanomaterials such as nano-emitting diodes to  determine this spectrum is the energy gap in the semiconductor used.

To change the energy gap, there is no choice but to  use semiconductor compounds instead of semiconductor elements. Decades ago, LEDs were still made with  two spectrums of red and green light, but the possibility of making high-brightness blue nano-LEDs  remained an unsolved mystery. Production of LEDs with blue light spectrum  By GaN, it was possible to produce white light with LEDs. Part of the  light the most efficient nano LED  bulbs are increasingly finding wider application. Optical detectors are key components of these circuits. The main substrate for making these circuits  is the photon crystal. Compounds (III-V) of nano-optical and nano-optical devices are among the most common applications of  nano-microelectronics. Possibility of connection between silicon processor cores and external memory By integrated optical communication channels made of composite semiconductors, with a very high data transfer rate  in other communication technologies and interconnection between processors, it has  attracted the integrated optical nanoelectronics.