Search results for "Metal halide"

showing 9 items of 9 documents

Solid-state mechanochemical synthesis of multinary metal halide semiconductors for optoelectronics: From powder to thin film

2020

En la última década, las perovskitas de haluro de plomo, así como otros haluros de metales múltiples, incluidas las alternativas sin plomo, han demostrado ser materiales prometedores para su uso en optoelectrónica. Por lo tanto, se buscan activamente nuevas formas de producir semiconductores de alta pureza a gran escala. Por tanto, el objetivo principal de esta tesis doctoral es el desarrollo de perovskitas y semiconductores relacionados utilizando métodos sin disolventes. Además, con la perspectiva del uso de dichos materiales en optoelectrónica a escala industrial, el foco está puesto en trabajar con materiales benignos para el desarrollo de alternativas a las perovskitas tóxicas. La sínt…

:CIENCIAS TECNOLÓGICAS [UNESCO]multinary metal halide semiconductorsoptoelectronicsthin filmUNESCO::QUÍMICAperovskitessolvent freemechanochemistryUNESCO::CIENCIAS TECNOLÓGICAS:QUÍMICA [UNESCO]single source vacuum deposition
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Template-controlled assembly of ditopic catechol phosphines: a strategy for the generation of complexes of bidentate phosphines with different bite a…

2008

A rational approach to the synthesis of heterobi- or -trimetallic complexes based upon self-assembly of a flexible ditopic catechol-phosphine ligand with [(cod)PdCl(2)] and simple metal halides such as GaCl(3), BiCl(3), SnCl(4), or ZrCl(4) is described. All products were characterized by spectroscopic and analytical data and single-crystal X-ray diffraction studies. The molecular structures can be described in terms of cis-configured palladium complexes with supramolecular bisphosphine ligands that are formed by the assembly of two phosphine catecholate fragments on a main group/transition metal template. Of particular interest are the distinct decreases in P-Pd-P bite angles and P...P dist…

Denticity010405 organic chemistryStereochemistryLigandOrganic ChemistrySupramolecular chemistrychemistry.chemical_elementGeneral Chemistry010402 general chemistry01 natural sciencesCatalysis0104 chemical scienceschemistry.chemical_compoundCrystallographyMetal halideschemistryTransition metalCovalent radiusPhosphinePalladiumChemistry (Weinheim an der Bergstrasse, Germany)
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Analysis of self-trapped hole mobility in alkali halides and metal halides

2017

Support from Latvian National Research Program IMIS2 (2014–2017) and LZP Grant No. 237/2012 (2013–2016) is greatly appreciated.

Electron mobilityChemistryInorganic chemistryHalide02 engineering and technologyGeneral ChemistryElectron021001 nanoscience & nanotechnologyCondensed Matter PhysicsPolaronAlkali metal01 natural scienceschemistry.chemical_compoundMetal halidesChemical physicsLattice (order)0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]General Materials ScienceRadiation stability010306 general physics0210 nano-technologySolid State Ionics
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Adducts of 1,4-diazabutadienes with group IIB metal halides

1981

Abstract The reactions of 1,4-diazabutadienes (or α-diimines) RNC(R′)C(R″)NR, DAB, (R = p -C 6 H 4 OMe, R′ = R″ = H, DAB I ; R = p -C 6 H 4 OMe,R′ = H, R″ = Me, DAB II ; R = p -C 6 H 4 OMe, R′= R″ = Me; DAB III ; R = CMe 3 , R′ = R″ = H, DAB IV ) with MX 2 M = Zn, Cd, Hg; X = CI, Br) yield in general 1/1 adducts. These species are assigned a monomeric configuration with a σ,σ′-N,N′, chelating DAB ligand for M = Zn, Hg, whereas the CdCl 2 adducts have polymeric structures with terminal and/or bridging chlorides. In the reactions of CdCl 2 with DAB I or DAB IV polymeric species [(CdCl 2 ) 2 (DAB)] x are obtained in which all chlorides are bridging. Spectrophotometric dissociation equilib…

LigandInorganic chemistryImineMedicinal chemistryDissociation (chemistry)AdductInorganic Chemistrychemistry.chemical_compoundMetal halideschemistryMaterials ChemistryChelationTitrationPhysical and Theoretical ChemistryEquilibrium constantInorganica Chimica Acta
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Degradation mechanisms in organic lead halide perovskite light-emitting diodes

2019

Organic–inorganic metal halide perovskites have attracted significant attention for low-cost, high-efficiency, color-pure light-emitting applications. However, as seen in many reports so-far, perovskite light-emitting diodes (PeLED) suffer from poor operational lifetime, limiting their practical use. The underlying degradation mechanism is a topic of crucial importance. Here, the degradation mechanisms of methylammonium lead bromide based PeLED are investigated. When the PeLED is electrically biased, there is an initial raise in the luminance followed by a rapid reduction in luminance and current density. Microscopic studies reveal the formation of micrometer-sized spots that are photolumin…

Materials sciencePhotoluminescenceHalide02 engineering and technologyElectroluminescencedevice lifetime010402 general chemistry01 natural sciencesperovskite stabilitylaw.inventionlawMaterialsPerovskite (structure)Diodedegradationbusiness.industrymetal halide perovskites021001 nanoscience & nanotechnologylight emitting diodesAtomic and Molecular Physics and OpticsCathode0104 chemical sciencesElectronic Optical and Magnetic MaterialsDegradation (geology)Optoelectronics0210 nano-technologybusinessLight-emitting diode
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Making by Grinding: Mechanochemistry Boosts the Development of Halide Perovskites and Other Multinary Metal Halides

2019

Mechanochemical synthesis has recently emerged as a promising route for the synthesis of functional lead halide perovskites as well as other (lead‐free) metal halides. Mechanochemical synthesis presents several advantages with regards to more commonly used solution‐based processes such as an inherent lower toxicity by avoiding organic solvents and a finer control over stoichiometry of the final products. The ease of implementation, either through the use of a simple mortar and pestle or with an electrically powered ball‐mill, and low amount of side products make mechanochemical synthesis appealing for upscaling the production of halide perovskites. Due to the defect tolerance of lead halide…

Materials scienceRenewable Energy Sustainability and the EnvironmentHalide02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesReaccions químiques0104 chemical sciencesGrindingchemistry.chemical_compoundMetal halideschemistryChemical engineeringMechanochemistryEnergiaGeneral Materials Science0210 nano-technologyAdvanced Energy Materials
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Ultralow thermal conductivity in 1D and 2D imidazolium-based lead halide perovskites

2021

Low-dimensional hybrid organic–inorganic metal halide perovskites are rapidly emerging as a fascinating sub-class of the three-dimensional parent structures, thanks to their appealing charge and thermal transport properties, paired to better chemical and thermal stabilities. Extensive investigations of the thermal behavior in these systems are of paramount relevance to understand their optoelectronic and thermoelectric applications. Herein, we present a complete thermophysical characterization of imidazolium lead iodide, (IMI)PbI3, a 1D pseudo-perovskite with chains of face-sharing octahedra, and histammonium lead iodide, (HIST)PbI4, a 2D layered perovskite with corner-sharing octahedra. Up…

Metal halideLead compoundMaterials sciencePhysics and Astronomy (miscellaneous)HalidePelletizingIodine compoundThermal diffusivityPerovskiteThermodynamic stabilityThermal expansionPowder metalHybrid systemThermal conductivityChemical physicsLayered semiconductorThermoelectric effectThermalorganic-inorganic materialThermal stabilityThermal expansionPerovskite (structure)
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Perovskites and Beyond: Dry Mechanochemical Synthesis of Multinary Metal Halides

2019

chemistry.chemical_compoundMetal halidesMaterials sciencechemistryInorganic chemistryProceedings of the 1st Interfaces in Organic and Hybrid Thin-Film Optoelectronics
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Recognition of alkali metal halide contact ion pairs by uranyl-salophen receptors bearing aromatic sidearms. The role of cation-pi interactions.

2005

Hard anions have long been known to bind strongly to the uranium of uranyl-salophen complexes. Upon functionalization of the salophen framework with one or two benzyloxy substituents, efficient ditopic receptors for alkali metal ions are obtained. The solid-state structures of complexes formed by the two-armed receptor 1 with CsF and with the chlorides of K+, Rb+, and Cs+ reported here reveal the existence of dimeric supramolecular assemblies in which two receptor units assemble into capsules fully enclosing (MX)2 ion quartets. In addition to the strong coordinative binding of the anion to the uranyl center and to electrostatic cation-anion interactions, stabilizing interactions arise from …

host-guest recognitionStereochemistrySupramolecular chemistryGeneral ChemistryCrystal structureAlkali metalUranylBiochemistrysupramolecular chemistryCatalysisIonchemistry.chemical_compoundCrystallographyalkaly metal ions. ditopic receptorsColloid and Surface ChemistrychemistryAlkali metal halideX-ray crystallographyReceptorJournal of the American Chemical Society
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