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A propos de cet article
Formule linéaire :
LiI
Numéro CAS:
Poids moléculaire :
133.85
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
12352302
EC Number:
233-822-5
MDL number:
Assay:
99.999% trace metals basis
Grade:
synthesis grade
Service technique
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Laissez-nous vous aidergrade
synthesis grade
product line
AnhydroBeads™
assay
99.999% trace metals basis
reaction suitability
core: lithium
greener alternative product characteristics
Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.
sustainability
Greener Alternative Product
impurities
≤15.0 ppm Trace Metal Analysis
particle size
−10 mesh
mp
446 °C (lit.)
density
3.49 g/mL at 25 °C (lit.)
application(s)
battery precursors
catalysts
electroplating
material synthesis precursor
greener alternative category
SMILES string
[Li+].[I-]
InChI
1S/HI.Li/h1H;/q;+1/p-1
InChI key
HSZCZNFXUDYRKD-UHFFFAOYSA-M
General description
We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Click here for more information.
Application
Controls regioselectivity in palladium catalyzed allylic alkylation reactions.
Legal Information
AnhydroBeads is a trademark of Sigma-Aldrich Co. LLC
Classe de stockage
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
dust mask type N95 (US), Eyeshields, Gloves
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Valentina Fiorini et al.
Dalton transactions (Cambridge, England : 2003), 49(41), 14543-14555 (2020-10-14)
A set of three new Ru(ii) polypyridyl complexes decorated with 5-aryl tetrazolato ligands (R-CN4)-, (D series, namely D1, D3 and D4), is presented herein. Whereas complex D1 represents the pyrazinyl tetrazolato analogue of a previously reported Ru(ii) complex (D2) with
Kawatsura, M. et al.
Chemical Communications (Cambridge, England), 217-217 (1998)
Qianglu Lin et al.
Journal of the American Chemical Society, 139(19), 6644-6653 (2017-04-22)
The use of semiconductor nanocrystal quantum dots (QDs) in optoelectronic devices typically requires postsynthetic chemical surface treatments to enhance electronic coupling between QDs and allow for efficient charge transport in QD films. Despite their importance in solar cells and infrared