"Scientific advances show evidence of the limits between the 4 disciplines that are considered the most important to know: Nanotechnology, Biotechnology, Info Technology, and Cognitive Technology, all together are known as NBIC. These technologies together are considered the platform for innovation."

NBIC INTERACTION

The dynamic interaction of nanotechnology, biotechnology and infotechnology allow the increase of universal knowledge to advance with cognotechnology. The harmonious integration of them will lead both to a deep understanding of the human being, as well as to a new and transcendent technological restructuring; this integration leads to NBIC (Nano, Bio, Info, Cogno Technology) convergence technologies, the initials of their elementary operating units, the atom in nanotechnology, the gene in biotechnology, the bit in infotechnology, the neuron in technology inherent in cognitive neuroscience.

Sinergismo Tecnologíco

Each time the advances and results of science show more diffuse limits between the four disciplines that we call core, namely: nanotechnology, biotechnology, info technology, and cognitive technology, together called (NBIC) which are themselves innovation platforms.

NIBC technologies are emerging more and more clearly as the engines for the development of a new economy, with the ability to provide simple answers to complex socioeconomic problems, which are made simple, by achieving expected or casual results; that could not have been produced by the independent contribution of any of the disciplines and that is achieved as a consequence of multifactorial intervention.

Nanotechnology

Nanotechnology promises small solutions to some of humanity's problems, it deals with the manipulation of matter on the nanometer scale, which is equivalent to one billionth of 1 meter, which is expressed mathematically as 1m / 1000,000 000. Nanomaterials are characterized by having components with at least one of their dimensions between 1 and 100 nanometers.

At the nanoscale the laws of physics operate differently; Nanomaterials can have different physical, electrical, mechanical, and chemical properties than the same material on a larger scale. Particles at the nanoscale are often more reactive than particles of the same component at a larger scale, such as the micrometer, or millimeter scale.

Nanotechnology Applications

Luminescent solar concentrator

It is the use of luminescent paints, nanostructured dyes, which when deposited on the surface of a glass, act as a funnel or waveguide, capturing sunlight, sending it and directing it mainly towards the ends of the glass, where the solar cells will convert it in electricity; This technology is known as luminescent solar concentrator.

Windows converted into photoelectric plants

Luminescent solar receivers do not require a costly procedure of orientation towards the sun. On the contrary, they also work in a static way and, furthermore, they can collect not only direct radiation from the sun, but also diffuse radiation. With the advantage of architectural integration to the building facades; the windows of buildings could act as power plants.

Fast and highly energetic batteries

Researchers have managed to multiply the energy density of lithium-ion batteries tenfold by incorporating carbon nanotubes, which have been studied to manufacture cellulose batteries, the main component of paper; that can store large amounts of energy over a long period more effectively and efficiently than a conventional battery.

Wireless transmission of electricity

It has been possible to make transmission of electricity a million times more efficient through Resonant Magnetic Fields that efficiently exchange wireless energy between transmitter and receiver.

Wireless energy through ultrasound

These are high-frequency sound waves, which, like a loudspeaker, convert electricity into ultrasound, which travel to the receiver, which then does the reverse process, converting the ultrasound into electricity.

The electronic ink

To retain the image on the screen, electronic devices require light emerging from the back of the screen to form the image. With Electronic Ink, the energy consumption is zero, as the retro projection of light is not necessary to draw the image.

Oled technology for cell phones and tablets

The OLED screens that incorporate a light bulb, to self-illuminate each pixel, so the battery life could be multiplied by ten or fifteen. In a world where everything points to wireless, nanotechnology could have the scissors to cut the last cable that keeps us tied, that of electricity.

Natural nanotubes

Los Nanotubos de Hallosite cuentan con más de cien aplicaciones potencialmente comerciales, una de las más conocidas es la utilizada en la industria farmacéutica para la dosificación lenta de fármacos.

Luminescent solar concentrator

It is the use of luminescent paints, nanostructured dyes, which when deposited on the surface of a glass, act as a funnel or waveguide, capturing sunlight, sending it and directing it mainly towards the ends of the glass, where the solar cells will convert it in electricity; This technology is known as luminescent solar concentrator.

Windows converted into photoelectric plants

Luminescent solar receivers do not require a costly procedure of orientation towards the sun. On the contrary, they also work in a static way and, furthermore, they can collect not only direct radiation from the sun, but also diffuse radiation. With the advantage of architectural integration to the building facades; the windows of buildings could act as power plants.

Fast and highly energetic batteries

Researchers have managed to multiply the energy density of lithium-ion batteries tenfold by incorporating carbon nanotubes, which have been studied to manufacture cellulose batteries, the main component of paper; that can store large amounts of energy over a long period more effectively and efficiently than a conventional battery.

Wireless transmission of electricity

It has been possible to make transmission of electricity a million times more efficient through Resonant Magnetic Fields that efficiently exchange wireless energy between transmitter and receiver.

Energía inalámbrica mediante ultrasonidos

These are high-frequency sound waves, which, like a loudspeaker, convert electricity into ultrasound, which travel to the receiver, which then does the reverse process, converting the ultrasound into electricity.

The electronic ink

To retain the image on the screen, electronic devices require light emerging from the back of the screen to form the image. With Electronic Ink, the energy consumption is zero, as the retro projection of light is not necessary to draw the image.

Tecnología Oled para Celulares y Tabletas

The OLED screens that incorporate a light bulb, to self-illuminate each pixel, so the battery life could be multiplied by ten or fifteen. In a world where everything points to wireless, nanotechnology could have the scissors to cut the last cable that keeps us tied, that of electricity.

Nanotubos Naturales

Los Nanotubos de Hallosite cuentan con más de cien aplicaciones potencialmente comerciales, una de las más conocidas es la utilizada en la industria farmacéutica para la dosificación lenta de fármacos.

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