The BBO CryoProbe is designed for highest sensitivity on the broadest range of nuclei. Besides1H and19F, all NMR nuclei in the range31P to15N can be observed, except the frequency range between 199Hg and 153Eu. All of these nuclei can be automatically selected and optimally tuned and matched by using the ATM option.
Concerning19F observation and decoupling Bruker offers two different BBO CryoProbe design: The BBFO and BBO H&F.
BBFOhas the capacity to observe1H with19F decoupling (and vice-versa) and to perform one or higher dimensional1H/19F spectroscopy with optimal quality.
BBO H&Fwas designed for enhanced19F and13C sensitivity compared to BBFO.19F can be adjusted via tuning the1H channel to19F. Hence1H observe with19F decoupling (and vice-versa) is no longer possible. Besides, the BBO H&F probe has capability of BB observe with ¹⁹F decoupling and to perform one or higher dimensional BB/¹⁹F spectroscopy, e.g. ¹⁹F-¹³C HSQC and HMBC correlation experiments.
Hence the BBO CryoProbe is the workhorse probe for routine NMR with high sensitivity and/or high throughput. In addition it provides a great solution for research applications on less commonly measured nuclei as well as low natural abundance / low sensitivity nuclei.
*Sensitivity compared to the SmartProbe
*Sensitivity compared to the SmartProbe
800 MHz CryoProbe™ 5mm BBO
¹H: Polymer in TCE-d₂
800 MHz CryoProbe™ 5mm BBO
¹³C: Polymer in TCE-d₂
800 MHz CryoProbe™ 5mm BBO
¹H: Pt-complex (10 mg) in CD²Cl²
800 MHz CryoProbe™ 5mm BBO
³¹P: Pt-complex (10 mg) in CD²Cl²
800 MHz CryoProbe™ 5mm BBO
¹⁹⁵Pt T1 inversion recovery: Pt-complex (10 mg)
800 MHz CryoProbe™ 5mm BBO
¹H-¹⁹⁵Pt HMQC: Pt-complex (10 mg) in CD₂Cl₂
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