Ácido 1-dodecilfosfónico, 95 %, Thermo Scientific Chemicals
Ácido 1-dodecilfosfónico, 95 %, Thermo Scientific Chemicals
Ácido 1-dodecilfosfónico, 95 %, Thermo Scientific Chemicals
Thermo Scientific Chemicals

Ácido 1-dodecilfosfónico, 95 %, Thermo Scientific Chemicals

CAS: 5137-70-2 | C12H27O3P | 250.32 g/mol
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Cantidad:
1 g
10 g
Número de catálogo H26259.09
también denominado H26259-09
Precio (EUR)
134,00
Each
Cantidad:
10 g
Pedido a granel o personalizado
Precio (EUR)
134,00
Each
Identificadores químicos
CAS5137-70-2
IUPAC Namedodecylphosphonic acid
Molecular FormulaC12H27O3P
InChI KeySVMUEEINWGBIPD-UHFFFAOYSA-N
SMILESCCCCCCCCCCCCP(O)(O)=O
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EspecificacionesSpecification SheetHoja de especificaciones
FormCrystals or powder or crystalline powder
Identification (FTIR)Conforms
Assay (Aqueous acid-base Titration)≥94% to ≤106.0%
Appearance (Color)White to pale grey
1-Dodecylphosphonic acid is used as tuning of surface energy, wetting, and work function of metal oxides.

This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Scientific Chemicals.

Aplicaciones
El ácido 1-dodecilfosfónico se usa como ajuste de la energía superficial, la humectación y la función de trabajo de los óxidos metálicos.

Solubilidad
Poco soluble en agua.

Notas
Almacenar en un lugar fresco y seco en un recipiente cerrado herméticamente. Incompatible con agentes oxidantes y bases.
RUO – Research Use Only

General References:

  1. Ravit Chen; Ada Schlossman; Eli Breuer; Gerhard Häagele; Christian Tillmann; Joel M. Van Gelder and Gershon Golomb. Long-Chain Functional Bisphosphonates: Synthesis, Anticalcification, and Antiresorption Activity. Heteroatom Chemistry. 2000, 11 (7), 369-377.
  2. Peter J Hotchkiss; Simon C Jones; Sergio A Paniagua; Asha Sharma; Bernard Kippelen; Neal R Armstrong; Seth R Marder. The modification of indium tin oxide with phosphonic acids: mechanism of binding, tuning of surface properties, and potential for use in organic electronic applications. Accounts of Chemical Research. 2012, 45 (3), 337-346.