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POLYACRYLAMIDE MATERIAL SAFETY DATA SHEET CAS NO 9003-05-8
POLYACRYLAMIDE CAS NO 9003-05-8 MATERIAL SAFETY DATA SHEET SDS/MSDS SECTION 1: Identification of the substance/mixture and of the company/undertaking 1.1 Product identifiers Product name : Polyacrylamide CAS-No. : 9003-05-8 1.2 Relevant identified uses of the substance or mixture and uses advised against
Synonym: Poly(NIPAM-co-MAA), Polyacrylamide, functionalized polyNIPAM, functionalized polyacrylamide, polyNIPAM Linear Formula: (C 6 H 11 NO) m (C 4 H 6 O 2 ) n CAS Number: 151954-97-1
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Nanosensors Based on Responsive Polymer Brushes and Gold Nanoparticle Enhanced Transmission Surface Plasmon Resonance Spectroscopy Article in Journal of the American Chemical Society 126(49):15950
Self-Healing Poly(acrylic acid) Hydrogels with Shape
A promising strategy to design synthetic hydrogels with the ability to self-heal is to substitute the covalently cross-linked polymer chains by supramolecular ones. Although supramolecular hydrogels generally exhibit rapid self-healing without the need for any stimulus, they suffer from low mechanical strength which prevents them from any stress-bearing applications.
Incubating Ag NP's with peptide for 24 h can efficiently inhibit activity of HIV-1 PR. But HIV-1 PR would cleave peptides faster than the binding rate of Ag NP's and the peptides; therefore, late presence of Ag NP's would have no inhibition on the HIV-1 PR activity. (Source: Journal of the Taiwan Institute of Chemical Engineers)
Structure–Property Relationship of Bifunctional MnO2
Manganese oxides of various structures (α-, β-, and δ-MnO2 and amorphous) were synthesized by facile methods. The electrocatalytic properties of these materials were systematically investigated for catalyzing both oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) in alkaline media. Extensive characterization was correlated with the activity study by investigating the
Quantitative readout of optically encoded gold nanorods using an ordinary dark-field microscope Article in Nanoscale 5(20) · July 2013 with 30 Reads How we measure 'reads'
- What flocculants are used in water treatment?
- Aluminium-based Flocculants: Aluminium sulphate (alum) is the most common aluminium-based flocculant used in water treatment. Its effectiveness is attributed to its ability to neutralise the electrical charges on colloidal particles, promoting their aggregation and subsequent sedimentation.
- What are new flocculants based on?
- New flocculants have been based on carbon and non-carbon nanomaterials, such as dendrimers, zeolites, hyperbranched polymers, and graphite oxide. These materials have been discussed in works on desalination of sea water and treatment of surface and groundwater [ 225, 226, 227 ].
- Can a microscopical approach be used for flocculant-based systems?
- Microscopical approaches have been review for flocculant-based systems. This manuscript can be viewed as a visual and comprehensive view of flocculants. Water is an essential element contributing to human life. Evidence shows that only a portion of the water from sewage/tailings is recovered in the consolidated tailings process.
- Does flocculation strategy work in water treatment?
- As the interest in application of flocculation strategy for water treatment has grown gradually, a number of review articles related to the flocculation process have been published in recent years. Table 2 lists selected review articles with their focus related to the flocculation process in water treatment.
