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213292 Aldrich

Sulfur

99.998% trace metals basis

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Properties

Related Categories Electronic Chemicals, Materials Science, Micro/NanoElectronics, Pure Elements
vapor density   8.9 (vs air)
vapor pressure   1 mmHg ( 183.8 °C)
  10 mmHg ( 246 °C)
InChI Key   NINIDFKCEFEMDL-UHFFFAOYSA-N
assay   99.998% trace metals basis
form   powder or flakes
autoignition temp.   450 °F
resistivity   2E23 μΩ-cm, 20°C
bp   444.7 °C(lit.)
mp   112.8 °C (rhombic)(lit.)
  117-120 °C(lit.)
  119.0 °C (monoclinic)(lit.)
density   2.07 g/mL at 25 °C

Description

Packaging

10, 50, 250 g in poly bottle

Application

It finds applications in Li-S polymer batteries and as semiconductor-sensitizer layer CdS/CdSe/ZnS for solar cells.

General description

Elemental sulfur exists in thirty different solid allotropes of which orthorhombic sulfur is the only thermodynamically stable form under normal temperature and pressure. It dissolves in a number of organic solvents and forms a large number of oxyacids. Sulfur is generally highly reactive; the S8 ring of elemental sulfur is easily broken by a number of nucleophilic reactants. The hydroxyl ions react with S at about 100oC.

Price and Availability

Suggested Laboratory Gloves


Laboratory GlovesThis substance has been tested against several types of hand protection for CE compliance. Click below to find the recommended gloves for handling this product.



Safety & Documentation

Safety Information

Symbol 
GHS07  GHS07
Signal word 
Warning
Hazard statements 
RIDADR 
UN1350 - class 4.1 - PG 3 - DOT - Class 9 - Sulfur
WGK Germany 
1
RTECS 
WS4250000
Flash Point(F) 
404.6 °F
Flash Point(C) 
207 °C

Documents

Certificate of Analysis

Certificate of Origin

Protocols & Articles

Articles

From Form to Function: Molding Porous Materials in Three Dimensions by Colloidal Crystal Templating

Methods of structuring materials with submicrometer features in two dimensions have become highly sophisticated. For example, lithographic methods are now capable of carving out several hundred milli...
Melissa A. Fierke, Fan Li, and Prof. Andreas Stein
Material Matters 2008, 3.1, 10.
Keywords: Applications, Centrifugation, Chemical vapor deposition, Combustion, Deposition, Diffraction, Diffusion, Emulsion polymerization, Filtration, Methods, Photographs, Polymerization reactions, Precipitation, Semiconductor, Sol-gel

Lanthanide Ions as Photon Managers for Solar Cells

Global energy consumption is on the rise and is projected to double by 2050, compared with worldwide energy consumption rates in 2001.1 Sustainable energy production based on the direct conversion of...
Keywords: Absorption, Capillary electrophoresis, Infrared spectroscopy, Nanomaterials, Photovoltaics, Reductions, Semiconductor, Solar cells

Solvothermal Synthesis of Nanoparticles

Solvothermal synthesis is a method for preparing a variety of materials such as metals, semiconductors, ceramics, and polymers. The process involves the use of a solvent under moderate to high pressu...
Prof. Bonnie Gersten
Chemfiles Volume 5 Article 13
Keywords: Absorption, Applications, Ceramics, Reductions, Semiconductor, Spectra, Type

Peer-Reviewed Papers
15

References

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