When organomagnesium halides meet carbonyl compounds, new carbon-carbon bonds are created thanks to Grignard reaction. This is one of the countless achievements in organic synthesis! Have you already used it? After watching the video, share your experience and tag a friend who loves chemistry to ignite their curiosity! https://lnkd.in/g6dxGHKV #Namedreaction #Organicsynthesis #chemicals #Grignardreaction #ThermoScientific
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When organomagnesium halides meet carbonyl compounds, new carbon-carbon bonds are created thanks to Grignard reaction. This is one of the countless achievements in organic synthesis! Have you already used it? After watching the video, share your experience and tag a friend who loves chemistry to ignite their curiosity! https://lnkd.in/g6dxGHKV #Namedreaction #Organicsynthesis #chemicals #Grignardreaction #ThermoScientific
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When organomagnesium halides meet carbonyl compounds, new carbon-carbon bonds are created thanks to Grignard reaction. This is one of the countless achievements in organic synthesis! Have you already used it? After watching the video, share your experience and tag a friend who loves chemistry to ignite their curiosity! https://lnkd.in/g6dxGHKV #Namedreaction #Organicsynthesis #chemicals #Grignardreaction #ThermoScientific
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When organomagnesium halides meet carbonyl compounds, new carbon-carbon bonds are created thanks to Grignard reaction. This is one of the countless achievements in organic synthesis! Have you already used it? After watching the video, share your experience and tag a friend who loves chemistry to ignite their curiosity! https://lnkd.in/g6dxGHKV #Namedreaction #Organicsynthesis #chemicals #Grignardreaction #ThermoScientific
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When organomagnesium halides meet carbonyl compounds, new carbon-carbon bonds are created thanks to Grignard reaction. This is one of the countless achievements in organic synthesis! Have you already used it? After watching the video, share your experience and tag a friend who loves chemistry to ignite their curiosity! https://lnkd.in/g6dxGHKV #Namedreaction #Organicsynthesis #chemicals #Grignardreaction #ThermoScientific
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Introducing Trimethyl Borate (CAS: 121-43-7), a versatile chemical compound with wide-ranging applications! Commonly used as a reagent in organic synthesis and as a flame retardant, Trimethyl Borate is a crucial component in many industrial processes. Its unique properties make it indispensable in producing high-performance materials. Dive into the world of chemistry and explore the significance of Trimethyl Borate! #TrimethylBorate #OrganicSynthesis #ChemicalReagent #FlameRetardant #IndustrialChemistry
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CEO at Yurui(Shanghai) Chemcial Co.,Ltd| chemistry, medicine, biology| OLED material, Precious Metal Catalyst,Fine chemicals, etc.
Introducing Trimethyl Borate (CAS: 121-43-7), a versatile chemical compound with wide-ranging applications! Commonly used as a reagent in organic synthesis and as a flame retardant, Trimethyl Borate is a crucial component in many industrial processes. Its unique properties make it indispensable in producing high-performance materials. Dive into the world of chemistry and explore the significance of Trimethyl Borate! #TrimethylBorate #OrganicSynthesis #ChemicalReagent #FlameRetardant #IndustrialChemistry
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Unraveling the Structural and Chemical Properties of Ketocyclic Compounds: A Review Introduction Ketocyclic compounds, also known as ketones and aldehydes, are fun... Read More - https://lnkd.in/dycPU4yE
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Introducing Legacy Product number #11: 1-Iodopropane, also known as n-propyl iodide, is a chemical compound with the molecular formula C3H7I. It is a halogenated hydrocarbon belonging to the alkyl iodide class. The product is an organic compound and is mainly used as an alkylating agent in synthetic organic chemistry. #Iofina #legacyproduct #organic #hydrocarbon
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Interesting thoughts to know for better understanding of Nitrosamine analysis.
🤔 Should samples be evaporated or not when performing nitrosamine analysis? 🤔 Today, at DocuChem, we want to talk about the importance of evaporating samples in nitrosamine analysis. ⚗ Our experts highlight two reasons why they consider evaporation as one of the crucial steps to consider when conducting the analysis: 1. Dissolution of Nitrosamines in Organic Solvents: To initiate the nitrosamine extraction process from the matrix, we use organic solvents, which are usually not compatible with LCMS (such as dichloromethane). This allows us, in a first step, to separate the nitrosamine from the matrix and then evaporate the solvent containing the nitrosamine and replace it with one compatible with LCMS (such as water, for example). 2. Sample Preconcentration: This process is usually carried out simultaneously with the nitrosamine extraction. To preconcentrate the sample, it is added in larger quantity to a large volume of solvent. Extraction is performed, the phase of interest (containing the nitrosamine) is separated from the matrix-containing phase, the first phase is evaporated, and then it is reconstituted with a smaller volume to preconcentrate the sample and achieve lower detection levels. Therefore, sample evaporation expands the possibilities in nitrosamine analysis. It helps to separate the substance of interest from the matrix and concentrate it for more sensitive detection. #Chemistry #Analysis #Nitrosamines #SampleEvaporation
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