Diphenyl ether

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Normal alkane RI, non-polar column, temperature ramp

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: NIST Mass Spectrometry Data Center, William E. Wallace, director

Column type CapillaryCapillaryCapillaryCapillaryCapillary
Active phase VF-5 MSVF-5 MSDB-1 MSDB-5OV-101
Column length (m) 60.60.30.30.50.
Carrier gas HeliumHeliumHeliumHe 
Substrate      
Column diameter (mm) 0.320.320.250.320.22
Phase thickness (μm) 0.250.250.250.25 
Tstart (C) 30.30.40.60.80.
Tend (C) 260.260.250.280.200.
Heat rate (K/min) 2.2.6.5.2.
Initial hold (min)   1.0.5 
Final hold (min) 28.28.4.2. 
I 1404.1405.1372.1396.1386.
ReferenceLeffingwell and Alford, 2011Leffingwell and Alford, 2011Seo, Kim, et al., 2009Ozel, Gogus, et al., 2006Egolf and Jurs, 1993
Comment MSDC-RI MSDC-RI MSDC-RI MSDC-RI MSDC-RI
Column type CapillaryCapillaryCapillaryCapillaryCapillary
Active phase Ultra-1HP-1HP-1HP-1HP-1
Column length (m) 25.12.12.12.25.
Carrier gas He    
Substrate      
Column diameter (mm) 0.320.20.20.20.32
Phase thickness (μm) 0.250.330.330.330.52
Tstart (C) 80.40.40.40.40.
Tend (C) 260.    
Heat rate (K/min) 3.16.4.8.8.
Initial hold (min)  0.3950.40.8010.8
Final hold (min)      
I 1364.1372.01356.91372.61371.8
ReferenceOkumura, 1991Yin and Sun, 1990Yin and Sun, 1990Yin and Sun, 1990Yin and Sun, 1990
Comment MSDC-RI MSDC-RI MSDC-RI MSDC-RI MSDC-RI
Column type Capillary
Active phase HP-1
Column length (m) 50.
Carrier gas  
Substrate  
Column diameter (mm) 0.2
Phase thickness (μm) 0.11
Tstart (C) 40.
Tend (C)  
Heat rate (K/min) 6.
Initial hold (min) 3.194
Final hold (min)  
I 1376.2
ReferenceYin and Sun, 1990
Comment MSDC-RI

References

Go To: Top, Normal alkane RI, non-polar column, temperature ramp, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Leffingwell and Alford, 2011
Leffingwell, J.; Alford, E.D., Volatile constituents of the giant pufball mushroom (Calvatia gigantea), Leffingwell Rep., 2011, 4, 1-17. [all data]

Seo, Kim, et al., 2009
Seo, S.-M.; Kim, J.; Lee, S.-G.; Shin, C.-H.; Shin, S.-C.; Park, I.-K., Fumigant antitermitic activity of plant essential oils and components from Aiowan (Trachyspermum ammi), Allspice (Pimenta dioica), Caraway (Carum carvi), Dill (Anethum graveolens), Geranium (Pelargonium graveolens), and Litsea (Litsea cubeba( oils against Japanese termite (Reticulitermes speratus Kolbe), J. Agric. Food Chem., 2009, 57, 15, 6596-6602. [all data]

Ozel, Gogus, et al., 2006
Ozel, M.Z.; Gogus, F.; Lewis, A.C., Comparison of direct thermal desorption with water distillation and superheated water extraction for the analysis of volatile components of Rosa damascena Mill. using GCxGC-TOF/MS, Anal. Chim. Acta., 2006, 566, 2, 172-177, https://doi.org/10.1016/j.aca.2006.03.014 . [all data]

Egolf and Jurs, 1993
Egolf, L.M.; Jurs, P.C., Quantitative structure-retention and structure-odor intensity relationships for a diverse group of odor-active compounds, Anal. Chem., 1993, 65, 21, 3119-3126, https://doi.org/10.1021/ac00069a027 . [all data]

Okumura, 1991
Okumura, T., retention indices of environmental chemicals on methyl silicone capillary column, Journal of Environmental Chemistry (Japan), 1991, 1, 2, 333-358, https://doi.org/10.5985/jec.1.333 . [all data]

Yin and Sun, 1990
Yin, H.F.; Sun, Y.L., The achievement of reproducible temperature programmed retention indices in gas chromatography when using different columns and detectors, Chromatographia, 1990, 29, 1/2, 39-43, https://doi.org/10.1007/BF02261137 . [all data]


Notes

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