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Agilent Cary 630 FTIR sample interfaces — combining high performance and versatility

Technical notes | 2011 | Agilent TechnologiesInstrumentation
FTIR Spectroscopy
Industries
Manufacturer
Agilent Technologies

Summary

Significance of the Topic


The ability to adapt Fourier-transform infrared (FTIR) spectroscopy to a wide variety of sample types is critical for modern analytical laboratories. The Agilent Cary 630 FTIR spectrometer, with its compact design and stable interferometer, addresses this need by offering multiple interchangeable sample interfaces. This versatility supports qualitative and quantitative analysis across industries including pharmaceuticals, materials science, environmental monitoring, and petrochemicals.

Objectives and Study Overview


This technical overview examines the design, functionality, and performance of the custom sample interfaces available for the Agilent Cary 630 FTIR. It highlights the operating principles, spectral capabilities, and intended application domains for each interface, illustrating how ease of use and analytical precision are balanced in a single platform.

Instrumentation Used


  • Transmission Module: Standard interface for solids (KBr pellets or mulls), liquids (sealed or demountable cells), gases (50 mm pathlength gas cell), and thin polymer films under purgeable conditions.
  • TumblIR Liquid Transmission: Fixed 100 μm pathlength ZnSe cell for direct oil and fuel analysis with detection limits around 50 ppm without sample preparation.
  • DialPath Multipath Transmission: Selectable pathlengths (30/50/100 μm or 50/100/250 μm) with ZnSe windows, enabling flexible sensitivity down to approximately 25 ppm.
  • Diamond ATR: Single-reflection attenuated total reflectance with a durable diamond crystal and built-in pressure clamp, suited for solids, liquids, and gels.
  • Diffuse Reflection: Normal-incidence diffuse reflectance accessory featuring gold and polystyrene reference standards for powders, tablets, and other solids.

Main Results and Discussion


Each interface delivers high spectral quality within the 5100–600 cm⁻¹ range (KBr engine extends to 7000–350 cm⁻¹). The modular design permits rapid swapping without realignment, maintaining signal stability and repeatability (typically ± 0.25 μm pathlength precision). Detection limits vary by interface but support both trace-level quantitative analysis and robust library matching for qualitative identification.

Benefits and Practical Applications


  • Fast interchangeability of sample interfaces reduces downtime and improves lab throughput.
  • Minimal sample preparation for many interfaces accelerates workflows in QA/QC and research settings.
  • Broad application range from gas-phase monitoring to complex liquid analysis and solid material characterization.

Future Trends and Potential Applications


Advances may include automated sample handling, expanded pathlength options, and integration with chemometric software for real-time data interpretation. Ongoing material innovations could yield new ATR crystals and transmission materials, further extending the technique's sensitivity and sample compatibility.

Conclusion


The Agilent Cary 630 FTIR, equipped with its suite of customizable sample interfaces, offers a highly versatile and user-friendly platform for infrared spectroscopy. Its combination of performance, ease of operation, and adaptability meets the diverse demands of modern analytical workflows.

Reference


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