麻豆淫院

February 14, 2012

New record for world's smallest atomic valentine

The unofficial world's smallest valentine is made of palladium atoms and gold atoms deposited on a carbon film. Image credit: University of Birmingham, Nanoscale 麻豆淫院ics Research Laboratory
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The unofficial world's smallest valentine is made of palladium atoms and gold atoms deposited on a carbon film. Image credit: University of Birmingham, Nanoscale 麻豆淫院ics Research Laboratory

(麻豆淫院Org.com) -- Shattering their own , scientists from the University of Birmingham in the UK have created the unofficial world鈥檚 smallest atomic valentine. Their tiny heart measures approximately 5 nm x 3.5 nm, a significant downsizing of the 8-nm heart from 2010.

The nanosized valentine is too small to be seen by the human eye or even with an optical microscope since it鈥檚 smaller than a visible wavelength of light. PhD student Alina Bruma, under the supervision of Dr. Ziyou Li, took a few images of the heart last weekend using a JEOL 2100F electron microscope, which uses electrons rather than photons to produce images. The scientists work at the university鈥檚 Nanoscale 麻豆淫院ics Research Laboratory, which is headed by Prof. Richard Palmer.

As Li explained, the 鈥渂umps鈥 that make up the heart are made of palladium (Pd) atoms and gold (Au) atoms, which are arranged on an amorphous carbon film. The different colors are false colors produced by imaging software. The key to making the nanoparticles form the shape was heating the nanoparticles, which causes a structure transformation.

Image credit: University of Birmingham, Nanoscale 麻豆淫院ics Research Laboratory
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Image credit: University of Birmingham, Nanoscale 麻豆淫院ics Research Laboratory

鈥淭he spontaneously formed nanoparticles at room temperature tend to have irregular structures,鈥 Li told 麻豆淫院Org.com. 鈥淯pon heating to 200-300 掳C (473-573 K), marked structure transforms occur, resulting in more ordered and regular alloyed nanoparticles.鈥

By controlling the annealling temperature and the order of the atoms, the researchers can control how the nanoparticles are chemically arranged. They added that, due to improved control of the heating, this year鈥檚 is also more stable than the one from two years ago. As might be expected, these abilities come in handy for making other things besides tiny hearts.

Image credit: University of Birmingham, Nanoscale 麻豆淫院ics Research Laboratory
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Image credit: University of Birmingham, Nanoscale 麻豆淫院ics Research Laboratory

鈥淭he ability to control the structure of nanoalloys may one day lead to new materials with novel properties, having potential applications in areas such as catalysis and optical devices,鈥 Li said.

The project is funded by and .

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