"Nanoclusters" Pronounce,Meaning And Examples

"Nanoclusters" Natural Recordings by Native Speakers

Nanoclusters
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"Nanoclusters" Meaning

Nanoclusters refer to a group of atoms or molecules that are extremely small in size, typically in the range of 1-10 nanometers (nm). They are often formed through chemical reactions or physical processes, and can have unique properties due to their small size and high surface area. Nanoclusters have potential applications in fields such as materials science, biotechnology, and medicine, and can be used to create new materials with specific properties, such as superconductors, magnets, or catalytic materials.

"Nanoclusters" Examples

Example Sentences for "Nanoclusters"


In recent years, scientists have been able to successfully create and study nanoclusters of various metals, which have exhibited unique properties. [Scientific/Technical Writing]
The researchers used advanced microscopy techniques to visualize the formation of nanoclusters on the surface of the catalyst. [Academic Writing]
Due to their small size, nanoclusters can be easily dispersed in various solutions and can provide targeted delivery of therapeutic compounds. [Medical/Biotechnology Writing]
The team was able to grow large-scale monolayers of nanoclusters on a substrate, allowing for further study of their optical properties. [Scientific/Technical Writing]
The use of nanoclusters in fuel cells has been shown to significantly improve the efficiency and stability of the energy storage and release processes. [Engineering/Energy Writing]

"Nanoclusters" Similar Words

Nanobots

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Nanobots are tiny robots that are typically between 1-100 nanometers in size. They are often referred to as nanorobots, microbots, or nucleus-scale robots. Since they are so small, nanobots are capable of manipulating and interacting with individual cells, molecules, and even individual atoms. This allows them to perform tasks such as targeted drug delivery, gene editing, and molecular assembly.

Nanobristles

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Nanobubbles

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Nanobubbles refer to extremely small bubbles of gas that are present in a liquid, typically measuring between 1-100 nanometers in diameter. They are typically formed through the interaction between a gas and a solid surface, such as the surface of a metal or a semiconductor, or through the decomposition of organic compounds. Nanobubbles are difficult to study and measure because of their small size, but they have been observed to have unique properties, such as stability and persistence, that distinguish them from larger bubbles. They are often used in various applications, including cleaning, purification, and biomedical devices.

Nanocapsule

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Nanocephalic

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Nanocephalous

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Nanocephalous refers to a condition characterized by an abnormally small size of the head, specifically a head circumference of less than 40 cm (15.7 inches), which is significantly below the average size for a given age group.

Nanocephaly

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Nanocephaly is a rare congenital anomaly characterized by an abnormally small head circumference, usually less than two standard deviations below the mean for age and sex. It is a cerebrocranial proportion measurement that can be compared to a normal standard, and this term is used by pediatricians to describe infants who have an unusually small head size.

Nanocluster

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Nanocolloidal

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Nanocomposite

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Nanocomposites

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Nanocomputers

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Nanocomputers refer to extremely small computers that are built at the molecular or nanoscale level, typically using fabrication techniques such as nanotechnology or molecular self-assembly. These computers are designed to have dimensions measured in nanometers (billionths of a meter), which is roughly 100,000 times smaller than a human hair.

Nanocrystal

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Nanocrystalline

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Nanocrystals

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Nanodevices

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Nanodevices refer to tiny electronic devices that are engineered to operate at the nanoscale, which is typically measured in billionths of a meter (nanometers). These devices are designed to take advantage of the unique properties of materials at the nanoscale, such as increased surface area, quantum effects, and unique chemical and physical properties. Nanodevices can be used in a wide range of applications, including medicine, energy, environmental monitoring, and electronic devices.