Learning About The Nanoparticles And The Science Involved In It
Nanoparticles are the
tiniest particles and have a high surface area. These particles can flaunt
colours or properties that even huge, bulky materials don't have. These
nanoparticles have different types and variations in their stock.
[1] A common and most known type is the metal
nanoparticles. Metal nanoparticles
are so small that they are invisible to the eyes. These particles can only be
seen through special tools and equipment. These types of particles are
typically made of silver, gold, and iron.
Metal nanoparticles
have special properties due to their chemical infusions and physical
structures. The particles are also very useful and are needed in medicine,
electrical equipment, environmental works, or environmental science.
They are also used for
energy supplies as they aid in increasing efficiency. Metal nanoparticles also have biological properties through plants
or bacteria. The particles have a magnetic nature and can be controlled by iron
or nickel.
[2] Likewise,
metal shots, another type of particle, are much bigger than metal
nanoparticles and belong to the same nanoparticle family. Both types of
nanoparticles hold common ground; that is, they are made of the same metals: iron,
gold, or silver. Yet, they are significantly different in numerous aspects. Metal shots are visible to the eyes.
These particles are
metal solids generally used in industrial activities. Their surface area is
bigger, which is why they are mainly used in manufacturing and industrial work.
They don't have a highly reactive nature and are more stable. Metal shots are highly durable and
reusable multiple times. They are more environmentally friendly due to their
reusability. It is crucial to use safety measures and wear safety gear while
using metal shots in processes such as protective eyewear, ventilation systems,
etc. They come in varied ranges like steel, lead, etc.
[3] Multiwalled Carbon Nanotubes are tube-like
structures made out of carbon. They are arranged in a tubular form with
multiple layers or sheets in it. These nanotubes are lightweight and can
conduct electricity and heat very well. Multiwalled carbon nanotubes are
strong, highly durable, and flexible. These are used in various fields like
electronics and medicine as they can interact with cells and materials. These
nanotubes have excess strength, which makes them very purposeful. The credit
also goes to their size, which makes them ideal for electronics and other
fields. Multiwalled carbon nanotubes
are less reactive and stable.
[4] Sometimes, metal nanoparticles and multi-walledcarbon nanotubes are blended and combined to create other materials with
different properties and advancements. Scientists are still exploring the
methods of synthesis and experiments digging deeper into their properties.
Research is still ongoing on how these materials can be safely disposed of in
the environment.
Conclusion
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