The AMSC lab’s advanced instrumentation is essential for advancing research. The NMR spectrometers allow for rapid and detailed molecular analysis, while the UV-Vis-NIR spectrophotometer supports extensive optical studies. The electrochemical workstation enhances research into electrochemical properties, and the purification system streamlines complex separation processes. High-resolution liquid chromatography and accelerated organic synthesis capabilities further boost research efficiency. Mass spectrometers enable precise molecular identification, and additional tools such as IR Spectrometers, a Scanning Electron Microscope, and thermal analysis equipment provide comprehensive support for spectroscopy, imaging, and material characterization. Together, these instruments facilitate significant advancements across various scientific disciplines.
is important in our lab for its ability to quickly and accurately identify molecular structures and monitor chemical reactions in real-time, enhancing both our research efficiency and educational capabilities. Its compact design and user-friendly interface make it accessible for routine analyses and teaching purposes.
is important in our lab for its high sensitivity and resolution, enabling detailed analysis of complex molecular structures. Its advanced capabilities enhance our research in structural biology, organic chemistry, and material science.
is important in our lab for its advanced capabilities in studying electrochemical properties and reactions. It supports various techniques, including cyclic voltammetry and impedance spectroscopy, enhancing our research in electrochemistry and material science.
is a versatile instrument essential in our lab for its ability to perform precise and comprehensive optical analyses across the ultraviolet, visible, and near-infrared spectra. Its high-performance capabilities support a wide range of applications, from material characterization to biological sample analysis.
is important in our lab for its ability to significantly accelerate organic synthesis reactions. This enhances our efficiency and productivity, allowing for faster reaction times and improved yields in our research and development projects.
is important in our lab for its robust and efficient liquid chromatography capabilities, providing high-resolution separation and analysis of complex mixtures. This system supports our research by ensuring precise and reliable results in various applications, from pharmaceuticals to biochemistry.
is important in our lab for its high-efficiency purification capabilities, enabling the rapid and automated separation of complex mixtures. This enhances our workflow in chemical synthesis and compound isolation, ensuring high purity and yield in our research projects.
is important in our lab for its robust gas chromatography and single quadrupole mass spectrometry capabilities. It provides high sensitivity and accurate identification of chemical compounds, supporting our research in environmental analysis, petrochemicals, and pharmaceuticals.
is important in our lab for its high-throughput and accurate mass spectrometry analysis. It enables rapid identification and characterization of biomolecules, such as proteins and peptides, enhancing our capabilities in proteomics and other molecular research.
Our chemistry lab facility is equipped with a wide range of advanced instruments, including the Conductivity Meter Corning 441 for precise measurement of solution conductivity, IR Spectroscopy for identifying functional groups and molecular characterization, and a Rotary Evaporator (Rotavap) for efficient solvent removal and sample concentration. We also have a Scanning Electron Microscope for high-resolution imaging of sample surfaces, TGA Perkin Elmer Diamond TG/DTA for thermogravimetric analysis, and an IR Spectrometer IR 100/200 Spectrometer, Thermo Nicolet for infrared analysis. Additionally, our lab features a UV Spectrometer Cary 50Bio, Varian for UV-visible spectroscopy, Luminescence Spectroscopy Perkin Elmer LS-45 for studying luminescent properties, and an Atomic Absorption Spectrometer SpectrAA 220 FS, Varian for elemental analysis. We utilize the LC-MS 6130 Quadrupole, Agilent Technology for liquid chromatography-mass spectrometry, GC-MS Saturn 2100T, Varian for gas chromatography-mass spectrometry, and an X-ray Photoelectron Spectrometer (XPS) Perkin 5600 ESCA system for surface chemical analysis.