Crystal Planes

Crystal planes are conceptual two-dimensional layers that define the orientation of atoms within a crystalline solid, helping chemists describe structure, symmetry, and surface properties. Their orientations are specified by Miller indices, which are obtained from the reciprocals of a plane’s intercepts with the crystal lattice axes; families of parallel planes share the same spacing and orientation. Crystal planes govern how crystals cleave, grow, adsorb molecules, and participate in surface reactions. In chemistry, identifying these planes supports interpretation of X-ray diffraction through Bragg’s law and helps relate atomic arrangement to catalytic activity, reactivity, and materials performance.

Crystal Planes - Related Videos

Education

JoVE Core - Physical Chemistry

Imperfections in Crystal Structure: Point, Line and Plane Defects

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2026

A perfect crystal, in theory, has a uniform structure with the same unit cell and lattice points throughout. However, any deviation from this periodic arrangement is known as an imperfection or defect. These defects can be categorized into three types: point, line, and plane defects.Point defects occur when there is a deviation from the ideal due to missing atoms, displaced atoms, or additional atoms. These imperfections might occur due to imperfect packing during crystallization or because of...

Research

JoVE Journal - Chemistry

Determining the Ice-binding Planes of Antifreeze Proteins by Fluorescence-based Ice Plane Affinity

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Cited by 48 •

2014

Antifreeze proteins (AFPs) bind to specific planes of ice to prevent or slow ice growth. Fluorescence-based ice plane affinity (FIPA) analysis is a modification of the original ice-etching method for determination of AFP-bound ice planes. AFPs are fluorescently labeled, incorporated into macroscopic single ice crystals, and visualized under UV light.

Education

JoVE Science Education - Environmental Sciences
Free Sample

Physical Properties Of Minerals I: Crystals and Cleavage

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2023

Source: Laboratory of Alan Lester - University of Colorado Boulder The physical properties of minerals comprise various measurable and discernible attributes, including color, streak, magnetic properties, hardness, crystal growth form, and crystal cleavage. Each of these properties are mineral-specific, and they are fundamentally related to a particular mineral’s chemical make-up and atomic structure. This experiment examines two properties that stem primarily from symmetric repetition of...

Protein Crystallization

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2023

Protein crystallization, obtaining a solid lattice of biomolecules, elucidates protein structure and enables the study of protein function. Crystallization involves drying purified protein under a combination of many factors, including pH, temperature, ionic strength, and protein concentration. Once crystals are obtained, the protein structure can be elucidated by x-ray diffraction and computation of an electron density model. This video introduces protein crystallization and shows a general...

Synthesis of Biocompatible Liquid Crystal Elastomer Foams as Cell Scaffolds for 3D Spatial Cell Cultures

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Cited by 9 •

2017

This study presents a methodology to prepare 3D, biodegradable, foam-like cell scaffolds based on biocompatible side-chain liquid crystal elastomers (LCEs). Confocal microscopy experiments show that foam-like LCEs allow for cell attachment, proliferation, and the spontaneous alignment of C2C12s myoblasts.

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