GF66166577
钯
foil, not light tested, 150x150mm, thickness 0.008mm, 99.95%
别名:
钯
方案
99.95%
表单
foil
制造商/商品名称
Goodfellow 661-665-77
电阻率
9.96 μΩ-cm, 20°C
尺寸 × 厚度
150x150 mm × 0.008 mm
沸点
2970 °C (lit.)
mp
1554 °C (lit.)
密度
12.02 g/cm3 (lit.)
SMILES字符串
[Pd]
InChI
1S/Pd
InChI key
KDLHZDBZIXYQEI-UHFFFAOYSA-N
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一般描述
For updated SDS information please visit www.goodfellow.com.
法律信息
Product of Goodfellow
储存分类代码
13 - Non Combustible Solids
WGK
nwg
闪点(°F)
Not applicable
闪点(°C)
Not applicable
法规信息
新产品
此项目有
Mélanie Platon et al.
Chemical Society reviews, 41(10), 3929-3968 (2012-03-27)
A survey highlighting the most recent palladium catalytic systems produced and their performances for progress in direct synthesis of indole backbones by heterocarbocyclization of reactive substrates is provided. The discussion is developed in relation with the principles of sustainable chemistry
Masahiro Yoshida
Chemical & pharmaceutical bulletin, 60(3), 285-299 (2012-03-03)
It is known that propargylic compounds having an ester and a halide at the propargylic positions react with palladium complexes leading to π-propargylpalladium and allenylpalladium complexes, which cause various transformations in the presence of the reactants. The aim of the
Simon De Corte et al.
Microbial biotechnology, 5(1), 5-17 (2011-05-11)
While precious metals are available to a very limited extent, there is an increasing demand to use them as catalyst. This is also true for palladium (Pd) catalysts and their sustainable recycling and production are required. Since Pd catalysts exist
M Angeles Fernández-Ibañez et al.
Molecules (Basel, Switzerland), 18(9), 10108-10121 (2013-08-27)
The dual activation of simple substrates by the combination of organocatalysis and palladium catalysis has been successfully applied in a variety of different asymmetric transformations. Thus, the asymmetric a-allylation of carbonyl compounds, a-fluorination of acyl derivatives, decarboxylative protonation of β-dicarbonyl
Amanda J Hickman et al.
Nature, 484(7393), 177-185 (2012-04-14)
Copper and palladium catalysts are critically important in numerous commercial chemical processes. Improvements in the activity, selectivity and scope of these catalysts could drastically reduce the environmental impact, and increase the sustainability, of chemical reactions. One rapidly developing strategy for
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