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278424

Sigma-Aldrich

Poly(vinylsulfonsäure, Natriumsalz) -Lösung

30-40 wt. % in H2O, technical grade

Synonym(e):

PVSA

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250 ML
149,00 €
1 L
442,00 €

149,00 €


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250 ML
149,00 €
1 L
442,00 €

About This Item

Lineare Formel:
(C2H3NaO3S)n
CAS-Nummer:
MDL-Nummer:
UNSPSC-Code:
12162002
PubChem Substanz-ID:
NACRES:
NA.23

149,00 €


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Qualität

technical grade

Qualitätsniveau

Form

liquid

Konzentration

30-40 wt. % in H2O

Brechungsindex

n20/D 1.389

Dichte

1.267 g/mL at 25 °C

SMILES String

[Na]OS(=O)(=O)C=C

InChI

1S/C2H4O3S.Na/c1-2-6(3,4)5;/h2H,1H2,(H,3,4,5);/q;+1/p-1

InChIKey

BWYYYTVSBPRQCN-UHFFFAOYSA-M

Anwendung

Poly(vinylsulfonsäure-Natriumsalz) (PVSA) kann wie folgt verwendet werden:

  • Bei der Herstellung von superabsorbierendem Semi-IPN (interpenetrierendes Polymernetzwerk)-Hydrogel.
  • Als fester Elektrolyt für die Protonenleitung bei der Herstellung eines vollmassiven Superkondensators.
  • Als Kristallisationskontrollmittel bei der Herstellung von hochwertigen Kristallen von porösen Koordinationspolymeren (CP). PVSA reguliert nicht nur die Größe und Struktur der Kristalle, sondern auch deren bevorzugte Orientierung, was zu einer CP-Kanalausrichtung im Pulverschüttungszustand führt.

Piktogramme

Exclamation mark

Signalwort

Warning

Gefahreneinstufungen

Eye Irrit. 2 - Skin Irrit. 2 - STOT SE 3

Zielorgane

Respiratory system

Lagerklassenschlüssel

10 - Combustible liquids

WGK

WGK 3

Persönliche Schutzausrüstung

Eyeshields, Gloves, type ABEK (EN14387) respirator filter


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Analysenzertifikate (COA)

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In der Dokumentenbibliothek finden Sie die Dokumentation zu den Produkten, die Sie kürzlich erworben haben.

Die Dokumentenbibliothek aufrufen

Philip Zakaria et al.
Journal of chromatography. A, 997(1-2), 207-218 (2003-07-02)
The electrokinetic chromatographic (EKC) separation of a series of aromatic bases was achieved utilising an electrolyte system comprising an anionic soluble polymer (polyvinylsulfonic acid, PVS) and a neutral beta-cyclodextrin (beta-CD) as pseudo-stationary phases. The separation mechanism was based on a
Jonatan R Catai et al.
Journal of chromatography. A, 1083(1-2), 185-192 (2005-08-05)
The suitability of noncovalently bilayer-coated capillaries for the analysis of proteins by capillary electrophoresis (CE) at medium pH was investigated. Fused-silica capillaries were coated simply by successively flushing with a polybrene (PB) and a poly(vinyl sulfonate) (PVS) solution. A protein
A M Bonastre et al.
Analytica chimica acta, 676(1-2), 1-8 (2010-08-31)
Needle type (165 microm(2)) and small Pt disc (3-11 microm(2)) microelectrodes were used for the electrodeposition of composite poly(aniline), PANi, films by cyclic voltammetry and chronoamperometry for the oxidation of ascorbate. PANi electroactivity at neutral pH was retained through polymer
Rawi Ramautar et al.
Electrophoresis, 29(12), 2714-2722 (2008-05-22)
A capillary electrophoresis-time of flight-mass spectrometry (CE-TOF-MS) method for the analysis of amino acids in human urine was developed. Capillaries noncovalently coated with a bilayer of Polybrene (PB) and poly(vinyl sulfonate) (PVS) provided a considerable EOF at low pH, thus
A Gambhir et al.
Applied biochemistry and biotechnology, 96(1-3), 249-257 (2002-01-11)
Immobilization of urease and glutamate dehydrogenase enzymes in electrochemically prepared polypyrrole-polyvinyl sulfonate films (PPY-PVS) was carried out using physical adsorption and electrochemical entrapment techniques. Detailed studies on optimum pH, Fourier transform infrared spectroscopy, cyclic voltammetry, and scanning electron microscopy of

Artikel

Recently, layer-by-layer (LbL) assembly has emerged as a versatile, gentle and, simple method for immobilization of functional molecules in an easily controllable thin film morphology.1,2 In this short review, we introduce recent advances in functional systems fabricated by using the mild, yet adaptable LbL technique.

We present an article that discusses two applications in particular; first, using these layers as polyelectrolyte membranes to control permeability.

Fragen

1-6 von 6 Fragen  
  1. How can I determine the shelf life / expiration / retest date of this product?

    1 Antwort
    1. If this product has an expiration or retest date, it will be shown on the Certificate of Analysis (COA, CofA). If there is no retest or expiration date listed on the product's COA, we do not have suitable stability data to determine a shelf life. For these products, the only date on the COA will be the release date; a retest, expiration, or use-by-date will not be displayed.
      For all products, we recommend handling per defined conditions as printed in our product literature and website product descriptions. We recommend that products should be routinely inspected by customers to ensure they perform as expected.
      For products without retest or expiration dates, our standard warranty of 1 year from the date of shipment is applicable.
      For more information, please refer to the Product Dating Information document: https://www.sigmaaldrich.com/deepweb/assets/sigmaaldrich/marketing/global/documents/449/386/product-dating-information-mk.pdf

      Hilfreich?

  2. How is shipping temperature determined? And how is it related to the product storage temperature?

    1 Antwort
    1. Products may be shipped at a different temperature than the recommended long-term storage temperature. If the product quality is sensitive to short-term exposure to conditions other than the recommended long-term storage, it will be shipped on wet or dry-ice. If the product quality is NOT affected by short-term exposure to conditions other than the recommended long-term storage, it will be shipped at ambient temperature. As shipping routes are configured for minimum transit times, shipping at ambient temperature helps control shipping costs for our customers. For more information, please refer to the Storage and Transport Conditions document: https://www.sigmaaldrich.com/deepweb/assets/sigmaaldrich/marketing/global/documents/316/622/storage-transport-conditions-mk.pdf

      Hilfreich?

  3. What causes the difference between the yellow and amber colors of this product?

    1 Antwort
    1. The quality specification for this item is only a residue on evaporation and appearance (color and form) assay for this technical grade product. Differences in color could be from numerous causes such as overall polymer composition, color perception, or appearance of raw material. It is not uncommon for the poly(styrenesulfonic acid sodium salt) to have color variations.

      Hilfreich?

  4. Hello, Just to confirm does the concentration of PVS vary from 30-40% in this raw material? Does 'Residue on evaporation' refer to the concentration of just PVS and not any impurities also in the raw material? I need to know the concentration of PVS.

    1 Antwort
    1. Residue on evaporation refers to any solid material remaining after evaporating the water away. This value does not take into account potential impurities present in addition to the Poly(vinylsulfonic acid, sodium salt). Therefore, the concentration may vary slightly from the value provided on the lot-specific Certificate of Analysis.

      Please access the link below to download a Certificate:
      https://www.sigmaaldrich.com/product/aldrich/278424#product-documentation

      Hilfreich?

  5. What is the pKa of this Poly(vinylsulfonic acid?

    1 Antwort
    1. The pKa value is not determined for this product.

      Hilfreich?

  6. What is the average molecular weight of the SIgma Poly(vinylsulfonic acid, sodium salt)?

    1 Antwort
    1. The molecular weight between 2000 and 5000 g/mol.

      Hilfreich?

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