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Zinc sulfide

About: Zinc sulfide is a research topic. Over the lifetime, 4388 publications have been published within this topic receiving 65001 citations. The topic is also known as: zinc(II) sulfide & zinc(II) sulphide.


Papers
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Journal ArticleDOI
03 May 2002-Science
TL;DR: A liquid crystal system was used for the fabrication of a highly ordered composite material from genetically engineered M13 bacteriophage and zinc sulfide nanocrystals, which spontaneously evolved a self-supporting hybrid film material.
Abstract: A liquid crystal system was used for the fabrication of a highly ordered composite material from genetically engineered M13 bacteriophage and zinc sulfide (ZnS) nanocrystals. The bacteriophage, which formed the basis of the self-ordering system, were selected to have a specific recognition moiety for ZnS crystal surfaces. The bacteriophage were coupled with ZnS solution precursors and spontaneously evolved a self-supporting hybrid film material that was ordered at the nanoscale and at the micrometer scale into approximately 72-micrometer domains, which were continuous over a centimeter length scale. In addition, suspensions were prepared in which the lyotropic liquid crystalline phase behavior of the hybrid material was controlled by solvent concentration and by the use of a magnetic field.

975 citations

Journal ArticleDOI
TL;DR: The protocol is illustrated for the simultaneous detection of three DNA sequences related to the BCRA1 breast-cancer gene in a single sample in connection to magnetic beads bearing the corresponding oligonucleotide probes.
Abstract: Nucleic-acid hybridization assays based on the use of different inorganic-colloid (quantum dots) nanocrystal tracers for the simultaneous electrochemical measurements of multiple DNA targets are described. Three encoding nanoparticles (zinc sulfide, cadmium sulfide, and lead sulfide) are used to differentiate the signals of three DNA targets in connection to stripping-voltammetric measurements of the heavy metal dissolution products. These products yield well-defined and resolved stripping peaks at −1.12 V (Zn), −0.68 V (Cd), and −0.53 V (Pb) at the mercury-coated glassy-carbon electrode (vs Ag/AgCl reference). The position and size of these peaks reflect the identity and level of the corresponding DNA target. The multi-target detection capability is coupled to the amplification feature of stripping voltammetry (to yield femtomole detection limits) and with an efficient magnetic removal of nonhybridized nucleic acids to offer high sensitivity and selectivity. The protocol is illustrated for the simultaneo...

576 citations

Journal ArticleDOI
TL;DR: High-resolution transmission electron microscopy studies show that the CdS and ZnS nanowires are single-crystal wurtzite structures with stoichiometric compositions, and photoluminescence measurements demonstrate that these Nanowires exhibit high-quality optical properties.
Abstract: Single-source molecular precursors were used to synthesize II−VI compound semiconductor nanowires for the first time. Cadmium sulfide and zinc sulfide nanowires were prepared using cadmium diethyldithiocarbamate, Cd(S2CNEt2)2, and zinc diethyldithiocarbamate, Zn(S2CNEt2)2, respectively, as precursors in a gold nanocluster-catalyzed vapor−liquid−solid growth process. High-resolution transmission electron microscopy studies show that the CdS and ZnS nanowires are single-crystal wurtzite structures with stoichiometric compositions. In addition, photoluminescence measurements demonstrate that these nanowires exhibit high-quality optical properties. The applicability of our approach to the synthesis of other compound and alloy semiconductors nanowires as well as nanowire heterostructures of these materials is discussed.

439 citations

Journal ArticleDOI
30 Jul 2004-Science
TL;DR: A method to quantify intermediate-range order in 3.4-nanometer-diameter zinc sulfide nanoparticles and show that structural coherence is lost over distances beyond 2nanometers, implying structural stiffening in nanoparticles.
Abstract: Nanoparticles may contain unusual forms of structural disorder that can substantially modify materials properties and thus cannot solely be considered as small pieces of bulk material. We have developed a method to quantify intermediate-range order in 3.4-nanometer-diameter zinc sulfide nanoparticles and show that structural coherence is lost over distances beyond 2 nanometers. The zinc-sulfur Einstein vibration frequency in the nanoparticles is substantially higher than that in the bulk zinc sulfide, implying structural stiffening. This cannot be explained by the observed 1% radial compression and must be primarily due to inhomogeneous internal strain caused by competing relaxations from an irregular surface. The methods developed here are generally applicable to the characterization of nanoscale solids, many of which may exhibit complex disorder and strain.

434 citations

Journal ArticleDOI
TL;DR: Etudes de suspensions colloidales aqueuses de ZnS et de la relation entre l'intensite d'emission and la distribution spectrale, et des facteurs tels que la concentration du dopant Mn 2+, the presence d'oxygene dissous ou d'ions sulfure en solution, the presence de lacunes dans le reseau de soufre, the photodegradation and l'extinction de la luminescence par des reactifs en solution.
Abstract: Etudes de suspensions colloidales aqueuses de ZnS et de la relation entre l'intensite d'emission et la distribution spectrale, et des facteurs tels que la concentration du dopant Mn 2+ , la presence d'oxygene dissous ou d'ions sulfure en solution, la presence de lacunes dans le reseau de soufre, la photodegradation et l'extinction de la luminescence par des reactifs en solution

415 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202386
2022207
2021136
2020171
2019186
2018245