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Science Yoga Mat featuring the photograph Silica Nanowires, Sem by Science Source

Boundary: Bleed area may not be visible.

The watermark at the lower right corner of the image will not appear on the final product.

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Silica Nanowires, Sem Yoga Mat

Science Source

by Science Source

$70.00

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Product Details

Our premium yoga mats are 24" wide x 72" tall x 0.25" thick and made from natural rubber with a blended microfiber top surface.   The top of the mat has the image printed on it, and the back is solid black with textured dimples for better floor grip.

Design Details

This edge-on SEM photograph depicts free-standing and self-aligned silica nanowires. Development of free-standing nanowire arrays is of technological... more

Care Instructions

Wash with a damp cloth and air dry.

Ships Within

2 - 3 business days

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Silica Nanowires, Sem Photograph by Science Source

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Yoga Mat Tags

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Photograph Tags

photographs science photos nanotechnology photos nanotech photos technology photos technological photos materials photos research photos molecular engineering photos nanoparticle photos gold photos nanorod photos atomic scale photos nanostructure photos argonne national laboratory photos anl photos

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Artist's Description

This edge-on SEM photograph depicts free-standing and self-aligned silica nanowires. Development of free-standing nanowire arrays is of technological interest for future energy conversion and energy storage devices. The silica nanowires are supported by a silicon wafer and still possess small indium droplets at their tips. Energetic ion bombardment and the unique growth energetics make the silica wires appear as if they have grown naturally. Mediated by droplets of liquid indium, these nanowires emerge and grow several microns tall. The droplets intercept silicon atoms emitted from a nearby source. Water vapor added to the growth environment reacts with silicon dissolved in the indium droplets, precipitating silica nanowires from the droplet surfaces. The wires grow and align themselves normal to the substrate as a result of normal incidence ion bombardment during processing. Without this ion bombardment, nanowire orientations are completely disordered, demonstrating that stranded sili...

 

$70.00