Summary This investigation is focused on the development of HPLC with subsequent flame ionization detection as a tool to determine the chemical composition distribution of non-or poorly UV absorbing copolymers. Experiments were carried out with poly(styrene-co-methyl acrylate) and poly(methyl acrylate-co-n-butyl acrylate) copolymers. HPLC combined with FID provided useful qualitative information. Quantitative information could be obtained after calibration
Examples of application of pyrolysis-gas chromatography-mass spectrometry technique for identificat...
Chemical composition distribution (CCD) is a fundamental metric for representing molecular structure...
Polymer responses to a variety of smouldering sources, including cellulose, acrylic, urethane, polyv...
Summary This investigation is focused on the development of HPLC with subsequent flame ionization de...
Summary This investigation is focused on the development of HPLC with subsequent flame ionization de...
Summary This investigation is focused on the development of HPLC with subsequent flame ionization de...
Column liquid chromatography Flame ionization detection Poly(styrene-co-methyl acrylate) Poly(methyl...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
Examples of application of pyrolysis-gas chromatography-mass spectrometry technique for identificat...
Chemical composition distribution (CCD) is a fundamental metric for representing molecular structure...
Polymer responses to a variety of smouldering sources, including cellulose, acrylic, urethane, polyv...
Summary This investigation is focused on the development of HPLC with subsequent flame ionization de...
Summary This investigation is focused on the development of HPLC with subsequent flame ionization de...
Summary This investigation is focused on the development of HPLC with subsequent flame ionization de...
Column liquid chromatography Flame ionization detection Poly(styrene-co-methyl acrylate) Poly(methyl...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
The CCD (chemical composition distribution) of poly(styrene-co-ethyl methacrylate) has been determin...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
In order to det. the chem. compn. distribution (CCD) of styrene-butadiene copolymers, gradient polym...
Examples of application of pyrolysis-gas chromatography-mass spectrometry technique for identificat...
Chemical composition distribution (CCD) is a fundamental metric for representing molecular structure...
Polymer responses to a variety of smouldering sources, including cellulose, acrylic, urethane, polyv...