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NANOGROWDIRECT explores a novel method called chemical contrast in situ growth to create nanopatterned surfaces with precise control over their properties. This approach aims to enhance the fabrication of nanomaterials for applications in optics, energy storage, and diagnostics.
Due to their unique physicochemical properties, nanopatterned surfaces can contribute to important technological innovations for efficient optical and communication devices, long-lasting batteries, and ultrasensitive diagnostic devices.
Bottom-up synthesis enable to construct nanomaterials atom-by-atom from precursors using synthetic chemistry, usually producing colloidal nanoparticle suspensions that are later assembled on a surface.
Alternatively, the fabrication process can be greatly simplif…
UNIVERSIDAD DE CANTABRIA
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