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Home / Applications / CD Measurement of α-pinene Gas in the Vacuum-UV Region

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CD Measurement of α-pinene Gas in the Vacuum-UV Region

By Heather Haffner

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January 5, 2024

Introduction

The J-1500 CD spectrometer has recently been updated to provide better signal detection and resolution for a variety of sample choices. The enhanced optical system increases the light throughput and the new electronics include the latest in digital lock-in technology, which allows for a small signal in a very noisy environment to be detected. These features ensure that CD spectra can obtained by the J-1500 for strongly absorbing and high signal-to-noise (S/N) samples across the spectrum and into the vacuum-UV region.

The CD spectra measurement in the vacuum-UV region of (1R)-(+)-α-pinene gas and (1S)-(-)-α-pinene gas is reported below.

J-1500 Circular Dichroism Spectrophotometer
J-1500 CD Spectrometer

Experimental

Measurement conditions
 Data acquisition interval 0.1 nm
 Spectral bandwidth 1 nm
 Accumulations 1
 Scan speed 20 nm/min
 Response time 1 sec

Keywords

230-CD-0015, J-1500, Circular Dichroism, CD, vacuum-UV region, α-pinene, gas measurement

Results

The vacuum-UV CD spectra of (1R)-(+)-α-pinene gas and (1S)-(-)-α-pinene gas are shown in Figure 1. The symmetrical CD spectra with high S/N were obtained at wavelengths as low as 163 nm and the sharp bands specific to gas samples can clearly be seen.

Figure 1. Vacuum-UV CD spectra of α-pinene gas

Conclusion

This application note demonstrates that gas samples can be obtained using the J-1500 CD spectrometer with high signalto-noise in the vacuum-UV region.

This document has been prepared based on information available at the time of publication and is subject to revision without notice. Although the contents are checked with the utmost care, we do not guarantee their accuracy or completeness. JASCO Corporation assumes no responsibility or liability for any loss or damage incurred as a result of the use of any information contained in this document. Copyright and other intellectual property rights in this document remain the property of JASCO Corporation. Please do not attempt to copy, modify, redistribute, or sell etc. in whole or in part without prior written permission.

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About the Author

JASCO Application Note

CD Measurement of α-pinene Gas in the Vacuum-UV Region

Introduction

The J-1500 CD spectrometer has recently been updated to provide better signal detection and resolution for a variety of sample choices. The enhanced optical system increases the light throughput and the new electronics include the latest in digital lock-in technology, which allows for a small signal in a very noisy environment to be detected. These features ensure that CD spectra can obtained by the J-1500 for strongly absorbing and high signal-to-noise (S/N) samples across the spectrum and into the vacuum-UV region.

The CD spectra measurement in the vacuum-UV region of (1R)-(+)-α-pinene gas and (1S)-(-)-α-pinene gas is reported below.

J-1500 Circular Dichroism Spectrophotometer
J-1500 CD Spectrometer

Experimental

Measurement conditions
 Data acquisition interval 0.1 nm
 Spectral bandwidth 1 nm
 Accumulations 1
 Scan speed 20 nm/min
 Response time 1 sec

Results

The vacuum-UV CD spectra of (1R)-(+)-α-pinene gas and (1S)-(-)-α-pinene gas are shown in Figure 1. The symmetrical CD spectra with high S/N were obtained at wavelengths as low as 163 nm and the sharp bands specific to gas samples can clearly be seen.

Figure 1. Vacuum-UV CD spectra of α-pinene gas

Conclusion

This application note demonstrates that gas samples can be obtained using the J-1500 CD spectrometer with high signalto-noise in the vacuum-UV region.

Keywords

230-CD-0015, J-1500, Circular Dichroism, CD, vacuum-UV region, α-pinene, gas measurement

This document has been prepared based on information available at the time of publication and is subject to revision without notice. Although the contents are checked with the utmost care, we do not guarantee their accuracy or completeness. JASCO Corporation assumes no responsibility or liability for any loss or damage incurred as a result of the use of any information contained in this document. Copyright and other intellectual property rights in this document remain the property of JASCO Corporation. Please do not attempt to copy, modify, redistribute, or sell etc. in whole or in part without prior written permission.
28600 Mary’s Court, Easton, MD 21601 USA • (800) 333-5272 • Fax: (410) 822-7526 • jascoinc.com/applications

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