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Dimethylglyoxime is a chemical compound described by the formula CH 3 C (NOH)C (NOH)CH 3. Its abbreviation is dmgH2 for neutral form, and dmgH− for anionic form, where H stands for hydrogen. This colourless solid is the di oxime derivative of the di ketone butane-2,3-dione (also known as diacetyl ). DmgH 2 is used in the analysis of palladium ...
Dimethylglycine (DMG) is an amino acid, a building block for protein. The body needs dimethylglycine to function. Dimethylglycine is an essential amino acid, which means that the body cannot make ...
Dimethylglycine ( DMG) is a derivative of the amino acid glycine with the structural formula (CH 3) 2 NCH 2 COOH. It can be found in beans and liver, and has a sweet taste. It can be formed from trimethylglycine upon the loss of one of its methyl groups. It is also a byproduct of the metabolism of choline .
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa). Nickel bis (dimethylglyoximate) is the coordination complex with the formula Ni [ONC (CH 3 )C (CH 3 )NOH] 2. The compound is a bright red solid. It achieved prominence for its use in the qualitative analysis of nickel.
A spectrochemical series is a list of ligands ordered by ligand "strength", and a list of metal ions based on oxidation number, group and element.For a metal ion, the ligands modify the difference in energy Δ between the d orbitals, called the ligand-field splitting parameter in ligand field theory, or the crystal-field splitting parameter in crystal field theory.
DMAE is a compound many people believe can protect brain function, improve memory, decrease symptoms of ADHD, and enhance skin health. DMAE is found in your body and in fatty fish. You may take it ...
Sarcosine is an intermediate and byproduct in glycine synthesis and degradation. Sarcosine is metabolized to glycine by the enzyme sarcosine dehydrogenase, while glycine- N -methyl transferase generates sarcosine from glycine. Sarcosine is an amino acid derivative that is naturally found in muscles and other body tissues.
In coordination chemistry, EDTA 4− is a member of the aminopolycarboxylic acid family of ligands. EDTA 4− usually binds to a metal cation through its two amines and four carboxylates, i.e., it is a hexadentate ("six-toothed") chelating agent. Many of the resulting coordination compounds adopt octahedral geometry.
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