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Journal ArticleDOI

Synthesis of colloidal crystals of controllable thickness through the Langmuir-Blodgett technique

TLDR
In this article, the Langmuir−Blodgett technique was used to control the sample thickness at the layer level whereas the overall crystal quality should be good enough for use in several applications.
Abstract
Colloidal crystals of various thicknesses were obtained using silica particles as basic units and the Langmuir−Blodgett technique as a tool for controlling the thickness. Submicronic silica particles are first synthesized via a sol−gel process and then functionalized with an appropriate coupling agent. After compression at the surface of a Langmuir trough to form a well-organized two-dimensional array, silica particles are transferred onto solid substrates. While repeating the transfer several times, we formed colloidal crystals that were characterized by scanning electron microscopy and UV−visible−NIR spectroscopies. Both techniques show that the sample thickness can be controlled at the layer level whereas the overall crystal quality should be good enough for use in several applications.

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Citations
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Advances in colloidal assembly: the design of structure and hierarchy in two and three dimensions.

TL;DR: This Review highlights the large number of methods to exploit colloidal assembly of comparably simple particles with nano- to micrometer dimensions in order to access complex structural hierarchies from nanoscopic over microscopic to macroscopic dimensions.
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Self-assembled photonic structures.

TL;DR: In this review a panorama is presented of the state of the art in this field with the view to serve a broad community concerned with materials aspects of photonic structures and more so those interested in self-assembly.
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Colloidal self-assembly meets nanofabrication: from two-dimensional colloidal crystals to nanostructure arrays

TL;DR: This paper presents an overview of 2D colloidal crystals and nanostructure arrays fabricated by colloidal lithography, and different methods for fabricating self-assembled 1D colloid crystals and complex 2DColloidal crystal structures are summarized.
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Design and functionality of colloidal-crystal-templated materials—chemical applications of inverse opals

TL;DR: This review outlines various synthetic methods used to control the morphology of 3DOM materials with different compositions and highlights aspects of the choice of colloidal particles, assembly of the colloidal crystal template, infiltration and processing, template removal, and other necessary modifications to enhance the functionality of the materials.
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Morphological and Optical Characterization of Polyelectrolyte Multilayers Incorporating Nanocrystalline Cellulose

TL;DR: The relationship between film color and thickness is discussed according to the principles of thin film interference and indicates that the iridescent properties of the films can be easily tailored in this system.
References
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Journal ArticleDOI

Controlled growth of monodisperse silica spheres in the micron size range

TL;DR: In this article, a system of chemical reactions has been developed which permits the controlled growth of spherical silica particles of uniform size by means of hydrolysis of alkyl silicates and subsequent condensation of silicic acid in alcoholic solutions.
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Single-Crystal Colloidal Multilayers of Controlled Thickness

TL;DR: In this article, the spontaneous crystallization of monodisperse silica spheres into close-packed arrays is exploited for optical characterization of planar materials with diffractive optical properties.
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Large-scale synthesis of a silicon photonic crystal with a complete three-dimensional bandgap near 1.5 micrometres

TL;DR: Single crystals of silicon inverse opal with a complete three-dimensional photonic bandgap centred on 1.46 µm are described, produced by growing silicon inside the voids of an opal template of close-packed silica spheres that are connected by small ‘necks’ formed during sintering, followed by removal of the silica template.
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Deep convective clouds with sustained supercooled liquid water down to -37.5 °C

TL;DR: In this article, the authors reported in situ measurements in deep convective clouds from an aircraft, showing that most of the condensed water remains liquid down to -37.5°C.
Journal ArticleDOI

Colloidal crystals as templates for porous materials

TL;DR: A wide range of advanced materials have recently been synthesized by replicating the structure of colloidal crystals into durable solid matrices as discussed by the authors, such materials have promise as photonic crystals, catalysts and membranes, and in a variety of other applications.
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