HORIBA - Nanolog®
Manufactured by HORIBA
Optimized for near-IR emissions of nanotubes and quantum dots, our Nanolog® offers the ultimate in research-grade spectroscopic measurements and acces
Optimized for near-IR emissions of nanotubes and quantum dots, our Nanolog® offers the ultimate in research-grade spectroscopic measurements and accessories, and takes full excitation-emission matrix scans in seconds. Included is our unique software for classifying SWNTs and performing energy-transfer calculations.
The Nanolog® series of spectrofluorometers are specifically designed for research in nanotechnology and the frontiers of nanomaterials. Based on the world-wide proven technology of the FluoroLog®, the NanoLog® detects fluorescence in the near-IR from 800 to 1700 nm (optional multi-channel detection to 2 µm, single-channel detection to 3 µm), with visible and UV options possible. With the NanoLog® comes specially designed software ideal for classifying SWNTs, performing energytransfer calculations, and saving custom routines and instrument layouts. A complete spectrum can be scanned as fast as a few milliseconds, and a full excitation-emission matrix scan can be taken in as little as seconds.
The Nanolog® series of spectrofluorometers are specifically designed for research in nanotechnology and the frontiers of nanomaterials. Based on the world-wide proven technology of the FluoroLog®, the NanoLog® detects fluorescence in the near-IR from 800 to 1700 nm (optional multi-channel detection to 2 µm, single-channel detection to 3 µm), with visible and UV options possible. With the NanoLog® comes specially designed software ideal for classifying SWNTs, performing energytransfer calculations, and saving custom routines and instrument layouts. A complete spectrum can be scanned as fast as a few milliseconds, and a full excitation-emission matrix scan can be taken in as little as seconds.
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Features of Nanolog®
- Rapid excitation-emission matrices in seconds * High sensitivity in near-IR with InGaAs array * High resolution * Eases qualification and quantification of species and families of SWNTs * Compatible with variety of detectors from UV to near-IR: Photomultiplier tube for highest sensitivity and timeresolved analysis Popular, cost-effective single-element InGaAs Multi-element CCD array for fast data-acquisition * Resolve mixtures of quantum dots simultaneously * Perform energy-transfer experiments * Modular design for your ideal experimental setup
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