Search Results - "Crystal growth & design"
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A Decade of UiO-66 Research: A Historic Review of Dynamic Structure, Synthesis Mechanisms, and Characterization Techniques of an Archetypal Metal–Organic Framework
Published in Crystal growth & design (05-02-2020)“…UiO-66 is an archetypal metal–organic framework (MOF) with a very high surface area as well as high thermal stability. It is found that the stability can be…”
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Creating Cocrystals: A Review of Pharmaceutical Cocrystal Preparation Routes and Applications
Published in Crystal growth & design (03-10-2018)“…Originally discovered almost a century ago, cocrystals continue to gain interest in the modern day due to their ability to modify the physical properties of…”
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Applied Topological Analysis of Crystal Structures with the Program Package ToposPro
Published in Crystal growth & design (02-07-2014)“…Basic concepts of computer topological analysis of crystal structures realized in the current version of the program package ToposPro are considered…”
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The Nature and Applications of π–π Interactions: A Perspective
Published in Crystal growth & design (06-02-2019)“…The updated concepts on the nature of π–π interactions and their use in various fields ranging from crystal engineering to materials science to biochemistry…”
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A Review of Classical and Nonclassical Nucleation Theories
Published in Crystal growth & design (02-11-2016)“…Nucleation, the initial process in vapor condensation, crystal nucleation, melting, and boiling, is the localized emergence of a distinct thermodynamic phase…”
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Porous Zn(II)-Based Metal–Organic Frameworks Decorated with Carboxylate Groups Exhibiting High Gas Adsorption and Separation of Organic Dyes
Published in Crystal growth & design (07-11-2018)“…Three new three-dimensional (3D) porous Zn(II)-based metal–organic frameworks (MOFs), namely, [Zn4O(L)2(NMP)2(H2O)]·2NMP·2H2O (1), [Zn(HL)(bpe)0.5]·DMF·H2O…”
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A Practical Guide to the Design of Molecular Crystals
Published in Crystal growth & design (06-02-2019)“…This Tutorial Review, aimed at both the novice and the seasoned solid-state chemist, provides a succinct overview of key findings that have, over the last half…”
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Low-Temperature Solution-Grown CsPbBr3 Single Crystals and Their Characterization
Published in Crystal growth & design (05-10-2016)“…Cesium lead bromide (CsPbBr3) was recently introduced as a potentially high performance thin-film halide perovskite (HaP) material for optoelectronics,…”
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Identification Schemes for Metal–Organic Frameworks To Enable Rapid Search and Cheminformatics Analysis
Published in Crystal growth & design (06-11-2019)“…The modular nature of metal–organic frameworks (MOFs) leads to a very large number of possible structures. High-throughput computational screening has led to a…”
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Crystal Growth of the Perovskite Semiconductor CsPbBr3: A New Material for High-Energy Radiation Detection
Published in Crystal growth & design (03-07-2013)“…The synthesis, crystal growth, and structural and optoelectronic characterization has been carried out for the perovskite compound CsPbBr3. This compound is a…”
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Sustainable Preparation of MIL-100(Fe) and Its Photocatalytic Behavior in the Degradation of Methyl Orange in Water
Published in Crystal growth & design (05-04-2017)“…The real industrial establishment of metal–organic frameworks (MOFs) requires significant advances in economic and chemical sustainability. This work describes…”
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12
π–π Stacking Interaction: A Nondestructive and Facile Means in Material Engineering for Bioapplications
Published in Crystal growth & design (02-05-2018)“…π–π stacking interactions, as a kind of attractive and nondestructive noncovalent interaction, have been widely explored for the applications in modern…”
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Cluster-Based Multifunctional Copper(II) Organic Framework as a Photocatalyst in the Degradation of Organic Dye and as an Electrocatalyst for Overall Water Splitting
Published in Crystal growth & design (07-07-2021)“…On the basis of the unprecedented one-dimensional {Cu2(tetrazole)(SO4)(OH)} n cluster, a novel two-dimensional layered copper(II) organic framework,…”
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14
Mid-Infrared Nonlinear Optical Materials Based on Metal Chalcogenides: Structure–Property Relationship
Published in Crystal growth & design (05-04-2017)“…Mid-infrared (IR) nonlinear optical (NLO) materials with high performance are vital to expanding the laser wavelengths into the mid-IR region and have…”
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Bimetallic Metal–Organic Frameworks for Gas Storage and Separation
Published in Crystal growth & design (05-04-2017)“…Emerging as a new family of hybrid crystalline materials, bimetallic porous metal–organic frameworks (MOFs) have received great attention in gas storage and…”
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Selective Area Growth of GaN Nanowires on Graphene Nanodots
Published in Crystal growth & design (05-02-2020)“…We present a new approach to achieve selective area growth of GaN nanowires by plasma-assisted molecular beam epitaxy. The nanowires are grown on graphene…”
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Recent Electrochemical Applications of Metal–Organic Framework-Based Materials
Published in Crystal growth & design (07-10-2020)“…Metal–organic frameworks (MOFs), a versatile class of porous materials that exhibit high specific surface areas, controllable structures, and tunable pores,…”
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Mixed-Ligand Strategy for the Construction of Photochromic Metal–Organic Frameworks Driven by Electron-Transfer Between Nonphotoactive Units
Published in Crystal growth & design (04-11-2020)“…Metal–organic frameworks (MOFs), as an emerging hybrid material, have been well explored in numerous areas such as adsorption, separation, catalysis,…”
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Design of a Highly-Stable Pillar-Layer Zinc(II) Porous Framework for Rapid, Reversible, and Multi-Responsive Luminescent Sensor in Water
Published in Crystal growth & design (06-02-2019)“…The hard–soft-acid–base (HSAB) and dual-ligand strategies have been used to construct a pillar-layer luminescent metal–organic framework (MOF)…”
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How Surfactants Control Crystal Growth of Nanomaterials
Published in Crystal growth & design (03-02-2016)“…Exciting characteristic features of nanomaterials in contrast to their bulk phase require shape control of morphologies at the nanometer scale. Surfactants, a…”
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