Agilent InfinityLab LC Purification Solutions - Purify Your Samples with Maximum Efficiency
Brochures and specifications | 2019 | Agilent TechnologiesInstrumentation
Liquid chromatography purification is a cornerstone of modern analytical chemistry, enabling the isolation of target compounds from complex mixtures with high purity and yield. Applications range from pharmaceutical development to fine chemical production and biomolecule isolation. High-performance purification workflows support critical activities in drug discovery, quality control, and research, delivering reproducible results and efficient sample recovery.
This article presents the Agilent InfinityLab LC Purification Solutions, a unified platform spanning analytical to preparative scale. The aim is to highlight how integrated instrumentation, columns, software, and services achieve maximum purification efficiency. Key objectives include demonstrating scalable workflows, seamless method transfer, high sample throughput, and reliable operation under changing laboratory demands.
Purification workflows combine high-resolution separations with precise fraction collection. Focused gradient profiles are calculated automatically for each target compound, minimizing solvent use and maximizing purity. Fraction triggering can be based on time, UV absorbance, or mass detection. Delay volumes are determined in real time by built-in sensors, ensuring fractions are collected at the elution apex. The platform supports flow rates from micrograms per minute to hundreds of milliliters per minute, enabling applications from analytical scouting to gram-scale isolation.
By integrating instrumentation and supplies, the InfinityLab platform delivers optimized performance in three dimensions: purification efficiency (achieving >95% purity and high recovery), instrument efficiency (scalable flow rates up to 200 mL/min with minimal carryover), and laboratory efficiency (compact footprint, modular upgrades, and safety features). Automated focused gradients and mass-triggered fraction collection increase throughput and reduce reanalysis. Delay-sensor technology lowers peak dispersion, preserving fraction integrity even at high flow rates.
Users benefit from streamlined workflows that transition seamlessly from analytical method development to preparative isolation. Sample safety is ensured by recovery collectors that direct all eluent to secure containers. Compatibility with a wide range of columns and supplies simplifies method transfer and scale-up. The small footprint and modular design allow labs to adapt to evolving throughput requirements without major infrastructure changes.
Emerging trends include deeper integration of advanced data analytics and machine learning for predictive method optimization. Modular hardware designs will support on-the-fly expansion of flow capacity and fraction density. Expanded use of real-time mass spectrometry detection will further refine fraction selection. Cloud-enabled informatics solutions may offer remote monitoring and automated reporting, driving even higher laboratory efficiency.
The Agilent InfinityLab LC Purification Solutions offer a fully integrated platform for efficient sample purification across scales. By uniting high-performance instrumentation, flexible columns, intelligent software, and comprehensive services, laboratories can achieve maximum purity, recovery, and throughput. This future-proof investment adapts to changing needs and supports the rigorous demands of modern analytical and preparative applications.
PrepLC
IndustriesManufacturerAgilent Technologies
Summary
Importance of the topic
Liquid chromatography purification is a cornerstone of modern analytical chemistry, enabling the isolation of target compounds from complex mixtures with high purity and yield. Applications range from pharmaceutical development to fine chemical production and biomolecule isolation. High-performance purification workflows support critical activities in drug discovery, quality control, and research, delivering reproducible results and efficient sample recovery.
Objectives and overview
This article presents the Agilent InfinityLab LC Purification Solutions, a unified platform spanning analytical to preparative scale. The aim is to highlight how integrated instrumentation, columns, software, and services achieve maximum purification efficiency. Key objectives include demonstrating scalable workflows, seamless method transfer, high sample throughput, and reliable operation under changing laboratory demands.
Methods
Purification workflows combine high-resolution separations with precise fraction collection. Focused gradient profiles are calculated automatically for each target compound, minimizing solvent use and maximizing purity. Fraction triggering can be based on time, UV absorbance, or mass detection. Delay volumes are determined in real time by built-in sensors, ensuring fractions are collected at the elution apex. The platform supports flow rates from micrograms per minute to hundreds of milliliters per minute, enabling applications from analytical scouting to gram-scale isolation.
Used instrumentation
- Analytical and preparative LC systems: Agilent 1220, 1260, and 1290 Infinity II series
- Detectors: variable wavelength, diode array, evaporative light scattering, and mass spectrometry modules
- Fraction collectors: valve-based and open-bed samplers with capacities up to 1296 fractions
- Columns: InfinityLab Load & Lock, Prep LC C18 and polar phases, PLRP-S media for demanding conditions
- Software: OpenLab CDS ChemStation with Automated Purification add-on for guided method scale-up
Main results and discussion
By integrating instrumentation and supplies, the InfinityLab platform delivers optimized performance in three dimensions: purification efficiency (achieving >95% purity and high recovery), instrument efficiency (scalable flow rates up to 200 mL/min with minimal carryover), and laboratory efficiency (compact footprint, modular upgrades, and safety features). Automated focused gradients and mass-triggered fraction collection increase throughput and reduce reanalysis. Delay-sensor technology lowers peak dispersion, preserving fraction integrity even at high flow rates.
Benefits and practical applications
Users benefit from streamlined workflows that transition seamlessly from analytical method development to preparative isolation. Sample safety is ensured by recovery collectors that direct all eluent to secure containers. Compatibility with a wide range of columns and supplies simplifies method transfer and scale-up. The small footprint and modular design allow labs to adapt to evolving throughput requirements without major infrastructure changes.
Future trends and possibilities
Emerging trends include deeper integration of advanced data analytics and machine learning for predictive method optimization. Modular hardware designs will support on-the-fly expansion of flow capacity and fraction density. Expanded use of real-time mass spectrometry detection will further refine fraction selection. Cloud-enabled informatics solutions may offer remote monitoring and automated reporting, driving even higher laboratory efficiency.
Conclusion
The Agilent InfinityLab LC Purification Solutions offer a fully integrated platform for efficient sample purification across scales. By uniting high-performance instrumentation, flexible columns, intelligent software, and comprehensive services, laboratories can achieve maximum purity, recovery, and throughput. This future-proof investment adapts to changing needs and supports the rigorous demands of modern analytical and preparative applications.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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