WHAT IS NANO TECHNOLOGY?

After more than 20 years of basic nanoscience research and more than fifteen years of focused R&D under the NNI (National Nanotechnology Initiative), applications of nanotechnology are delivering in both expected and unexpected ways on nanotechnology’s promise to benefit society. Nanotechnology is considered one of the most advanced technologies. One of the nanomaterials superiority is the ability to penetrate deep into the cell without any barriers to it thanks to its microscopic size and increase the efficiency of the product.

Nanotechnology is science, engineering, and technology conducted at the nanoscale, which is about 1 to 100 nanometers. Nanoscience and nanotechnology are the study and application of extremely small things and can be used across all the other science fields, such as chemistry, biology, physics, materials science, and engineering.

Nanotechnology is the study of extremely small structures, having the size of 1-100 nanometers. In recent years, Nanotechnology has shown potential in improving nutrient delivery.

Infinite CBD is utilizing the same technology used for nutrient delivery to create Nano CBD products that improve the way you feel the effects of CBD in many new ways.

HOW IS NANOTECHNOLOGY USED TODAY?

Nanotechnology is already bringing incredible benefits in areas such as health care, the environment, energy and national security. Precision targeting of cancer cells deep within the body; removing pollutants from groundwater and soil; enhancing the performance of solar panels; improving detection of chemical and biological weapons; and preventing infections in wounds are just a few of the ways nanotechnology is enhancing our world. Nanotechnology is enabling science to do amazing things that were not possible even a few years ago. Scientists and businesses are constantly exploring new ways nanotechnology can help solve societal problems and improve products.

NANOTECHNOLOGY IN CBD PRODUCTS

Nanomicelles are typically spherical, but can sometimes take other shapes, such as cylinders and ellipsoids. The small size and shape of nanomicelles is only possible due to the molecular geometry of the particle. The shapes formed also depend on the ionic strength, surfactant concentration, and pH strength of the solutions they are placed in.

Liposomes are small artificial vesicles of spherical shape that can be created from cholesterol and natural non-toxic phospholipids. Due to their size and hydrophobic and hydrophilic character(besides biocompatibility), liposomes are promising systems for drug delivery. Liposome properties differ considerably with lipid composition, surface charge, size, and the method of preparation form a rigid, rather impermeable bilayer structure.