Phenomenex Unveils Cutting-Edge 0.15 mm ID Micro LC Columns and Traps for Low-Flow Applications

Revolutionary Advancements in Analytical Chemistry: Phenomenex's New Micro LC Technology



In the realm of analytical sciences, the quest for precision and high sensitivity is ever-present, particularly in fields like proteomics and metabolomics. Recently, Phenomenex Inc., a subsidiary of Danaher Corporation and a global leader in advanced separation technologies, made significant strides in this domain with the launch of its innovative 0.15 mm ID Micro LC columns and traps. This groundbreaking product aims to enhance the performance and efficiency of low-flow applications, providing scientists with cutting-edge tools for better analysis and research.

Addressing Daily Challenges in the Lab



Scientists often encounter challenges when it comes to the efficient separation and analysis of complex samples. With the introduction of these microcolumns, Phenomenex has specifically targeted the daily hurdles faced by researchers in proteomics, metabolomics, and oligonucleotide characterization. These new columns, equipped with core-shell technology, are engineered to perform remarkably at flow rates of just 1-5 µL/min, a significant leap over traditional micro-flow columns. This enhancement promises to yield greater efficiency and accuracy in experiments involving low-flow applications.

The newly launched columns are available in various types, including Kinetex 2.6 µm XB-C18, EVO C18, and the upcoming Luna Omega 1.7 µm PS-C18. Each variant is tailored to meet specific reverse-phase application needs, ensuring that researchers have the right tool for any job.

Exceptional Performance and Compatibility



Dr. Tasso Milliotis, Senior Scientist at AstraZeneca, has already tested these remarkable new columns. He describes the 150 x 0.15 mm capillary LC column (Kinetex 2.6 µm XB-C18, 100 Å) as offering exceptional robustness and high separation efficiency under demanding conditions aimed at high-sensitivity biomarker analysis. One of the key features he appreciates is the female connectors present at both ends of the column, ensuring seamless integration with virtually any low-flow LC-MS system. Dr. Milliotis emphasizes that this capillary column unites durability, performance, and versatility, establishing itself as the new standard for high-sensitivity applications in laboratory settings.

Expanded Capabilities with New Traps



In addition to columns, Phenomenex has also launched a line of micro and nano traps that come with integrated accessories for easy installation, assuring compatibility across a wide range of instrument providers. This expanded product line facilitates greater selectivity in applications, allowing for enhanced combination with microcolumns, effectively bridging the gap between nano-flow and micro-flow applications. Designed to excel in low-dispersion separations, these traps are sturdy enough to withstand pressures up to 15,000 psi. They ensure minimal solvent consumption while enhancing the sensitivity of analyses, resulting in more robust and accurate results for researchers.

Commitment to Innovation in Analytical Sciences



As a pioneering force in analytical chemistry, Phenomenex continues to lead the way in developing innovative solutions that tackle separation and purification challenges faced by researchers across various sectors, including pharmaceuticals, biotechnology, environmental studies, and clinical research. Their cutting-edge chromatography solutions not only enhance scientific discovery but also play a crucial role in improving human health and wellbeing.

To learn more about these Micro LC columns and other innovative products, visit Phenomenex's website and stay updated with their advancements via their blog at Science Unfiltered. Further, connect with them on LinkedIn, Twitter, Facebook, Instagram, and YouTube to keep up with their latest initiatives and insights.

With these significant advancements in micro LC technology, Phenomenex remains at the forefront of improving analytical capabilities, empowering researchers to push the boundaries of scientific discovery.

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