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13 products found for search term "M".

  • Mepron®

    This product is based on DL-Methionine designed specifically for high-yielding dairy cows. Mepron® consists of mini-pellets which are protected from ruminal breakdown by encapsulation.

  • MetAMINO® (DL-Methionine Feed Grade)

    MetAMINO®, an amino acid manufactured at purity levels exceeding 99 %, plays a central role in ensuring balanced nutrition and optimum growth of poultry, swine and aqua.

  • Magnesium L-Aspartate Dihydrate

    CAS name: L-Aspartic acid, magnesium salt (2:1) CAS number: 2068-80-6 Formula: C8H12MgN2O8 x 2H2O Product Groups: Amino Acids for Pharma Amino Acids for Pharma - Amino Acid Salts Markets: Food, Feed & Beverages Pharma & Healthcare Code: Mg-L-Asp2 2H2O Synonyms: Aspartic acid, magnesium salt (2:1), L- L-Aspartic Acid, Magnesium salt (2:1) dihydrate Molecular weight: 324.5 g/mol

  • Methoxycarbonylmethylentriphenylphosphorane

    CAS number: 2605-67-6 Formula: C21H19O2P Product Groups: Amino Acids for Pharma Markets: Pharma & Healthcare Code: MMY Molecular weight: 334.36 g/mol

  • Methoxyethyltriphenylphoshonium chloride

    CAS number: 65839-64-7 Formula: C21H22OPCl Product Groups: Amino Acids for Pharma Markets: Pharma & Healthcare Code: MEP Molecular weight: 356,83 g/mol

  • MOC-L-tert.Leucine

    CAS name: N-(Methoxycarbonyl)-L-tert.Leucine CAS number: 162537-11-3 Formula: C8H15NO4 Product Groups: Amino Acids for Pharma Markets: Pharma & Healthcare Code: MOC-TLe Synonyms: N-Methoxycarbonyl-(S)-tert.-Leucine Molecular weight: 189.21 g/mol Related reactions: Biocatalysis: Technology Platform Oxidoreductase

  • Methyltriphenylphosphonium bromide

    CAS name: Phosphonium, methyltriphenyl-, bromide CAS number: 1779-49-3 Formula: C19H18BrP Code: TMP Synonyms: Methyltriphenylphosphonium bromide Triphenylmethylphosphonium bromide Triphenylphosphonium methylbromide Molecular weight: 357.23 g/mol Related reactions: Phosphonium salts and phosphoranes Wittig Reactions

  • Methyltriphenylphosphonium iodide

    CAS name: Phosphonium, methyltriphenyl-, iodide CAS number: 2065-66-9 Formula: C19H18IP Code: MPJ Synonyms: Methyltriphenylphosphonium iodide Triphenylmethylphosphinium iodide Triphenylmethylphosphonium iodide Molecular weight: 404.23 g/mol Related reactions: Phosphonium salts and phosphoranes Wittig Reactions  

  • Methyoxymethyltriphenylphosphonium chloride

    CAS name: Phosphonium, (methoxymethyl)triphenyl-, chloride CAS number: 4009-98-7 Formula: C20H20ClOP Code: MMC Synonyms: (Methoxymethyl)triphenylphosphonium chloride Triphenyl(methoxymethyl)phosphonium chloride Molecular weight: 342.81 g/mol Related reactions: Phosphonium salts and phosphoranes Wittig Reactions

  • Modifier 705

    Modifier 705 and Modifier 715 are SiH-terminated polydimethyl siloxanes which are used as plasticizers in addition-curing silicones. Due to their difunctional structure, these products do not react by crosslinking, but by extending the chains of vinyl-terminated silicone polymers (Polymer VS). Use of the modifiers reduces the crosslinking density and therefore the elastomer hardness.

  • Modifier 715

    Modifier 705 and Modifier 715 are SiH-terminated polydimethyl siloxanes which are used as plasticizers in addition-curing silicones. Due to their difunctional structure, these products do not react by crosslinking, but by extending the chains of vinyl-terminated silicone polymers (Polymer VS). Use of the modifiers reduces the crosslinking density and therefore the elastomer hardness.

  • Modifier OH 650

    Modifier OH are reactive silicone plasticizers for condensation systems containing both crosslinkable (hydroxy-functional) and unreactive chain ends. Modifier OH are therefore particularly suited for producing “non-bleeding” silicone sealants for marble/natural stone applications and for the electronics industry. Gel-like materials can also be produced using Modifier OH.

  • Modifier OH 655

    Modifier OH are reactive silicone plasticizers for condensation systems containing both crosslinkable (hydroxy-functional) and unreactive chain ends. Modifier OH are therefore particularly suited for producing “non-bleeding” silicone sealants for marble/natural stone applications and for the electronics industry. Gel-like materials can also be produced using Modifier OH.

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