Top-quality Ultisil Hilic Amide, 3.5μm, 2.1×50mm Essentials [hojm2FnA]
Ultisil HILIC Amide: A Superior HILIC ColumnIntroducing the Ultisil HILIC Amide, a state-of-the-art amide-based hydrophilic interaction liquid chromatography (HILIC) column designed for superior separation of complex mixtures. Constructed on ultra-pu
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Top-quality Ultisil Hilic Amide, 3.5μm, 2.1×50mm Essentials [hojm2FnA]
Ultisil HILIC Amide: A Superior HILIC Column
Introducing the Ultisil HILIC Amide, a state-of-the-art amide-based hydrophilic interaction liquid chromatography (HILIC) column designed for superior separation of complex mixtures. Constructed on ultra-pure silica, this column is a favorite among chromatographers for its exceptional performance and versatility. With separation forces akin to HILIC-NH2, the Ultisil HILIC Amide offers distinct selectivity, making it ideal for a wide range of applications. Discover the benefits of this innovative column:- Fast and efficient separation of sugars, peptides, and low-molecular-weight polar pharmaceuticals.
- Low baseline drift when paired with ELSD and MS detectors, ensuring accurate and consistent results.
Key Features and Specifications
The Ultisil HILIC Amide is engineered with precision, offering several key features that set it apart from other HILIC columns. Its 3.5μm particle size and 2.1×50mm dimensions ensure optimal performance and throughput. This column is known for its exceptional durability, providing a longer lifespan compared to NH2 columns. Here are some of its notable features:- Amide-based hydrophilic interaction liquid chromatography (HILIC) technology.
- Ultra-pure silica construction for high-resolution separations.
- Low baseline drift with ELSD and MS detectors for enhanced accuracy.
Practical Applications and Benefits
The Ultisil HILIC Amide is an indispensable tool for various applications, particularly in the analysis of complex samples containing sugars, peptides, and polar pharmaceuticals. Its unique selectivity and robustness make it a preferred choice in industries such as pharmaceutical research, biotechnology, and environmental analysis. Here are some practical uses:- Pharmaceutical analysis for separating and quantifying polar compounds.
- Biotechnology applications for purifying and characterizing peptides and proteins.
- Environmental analysis for detecting and quantifying polar organic pollutants.
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