Atmospheric Oxidation Mechanism of Methyl Pivalate, (CH3)3CC(O)OCH3 Wallington, T.J., et al. (2001), Atmospheric Oxidation Mechanism of Methyl Pivalate, (CH3)3CC(O)OCH3, J. Phys. Chem. A, 105, 7225-7235, doi:10.1021/jp010308s. Read more about Atmospheric Oxidation Mechanism of Methyl Pivalate, (CH3)3CC(O)OCH3
Photochemistry of Bromine-Containing Fluorinated Alkenes: Reactivity toward OH and UV Spectra Orkin, V.L., et al. (2002), Photochemistry of Bromine-Containing Fluorinated Alkenes: Reactivity toward OH and UV Spectra, J. Phys. Chem. A, 106, 10195-10199, doi:10.1021/jp014436s. Read more about Photochemistry of Bromine-Containing Fluorinated Alkenes: Reactivity toward OH and UV Spectra
OH Reactivity and UV Spectra of Propane, n-Propyl Bromide, and Isopropyl Bromide Kozlov, S.N., et al. (2003), OH Reactivity and UV Spectra of Propane, n-Propyl Bromide, and Isopropyl Bromide, J. Phys. Chem. A, 107, 1333-1338, doi:10.1021/jp021806j. Read more about OH Reactivity and UV Spectra of Propane, n-Propyl Bromide, and Isopropyl Bromide
An Investigation of the Reactivity of OH with Fluoroethanes: CH3CH2F (HFC-161), CH2FCH2F (HFC-152), and CH3CHF2 (HFC-152a) Kozlov, S.N., et al. (2003), An Investigation of the Reactivity of OH with Fluoroethanes: CH3CH2F (HFC-161), CH2FCH2F (HFC-152), and CH3CHF2 (HFC-152a), J. Phys. Chem. A, 107, 2239-2246, doi:10.1021/jp022087b. Read more about An Investigation of the Reactivity of OH with Fluoroethanes: CH3CH2F (HFC-161), CH2FCH2F (HFC-152), and CH3CHF2 (HFC-152a)
Aircraft validation of Aura Tropospheric Emission Spectrometer retrievals of HDO / H2O Herman, R.L., et al. (2014), Aircraft validation of Aura Tropospheric Emission Spectrometer retrievals of HDO / H2O, Atmos. Meas. Tech., 7, 3127-3138, doi:10.5194/amt-7-3127-2014. Read more about Aircraft validation of Aura Tropospheric Emission Spectrometer retrievals of HDO / H2O
Enhanced stratospheric water vapor over the summertime continental United States and the role of overshooting convection Herman, R.L., et al. (2017), Enhanced stratospheric water vapor over the summertime continental United States and the role of overshooting convection, Atmos. Chem. Phys., 17, 6113-6124, doi:10.5194/acp-17-6113-2017. Read more about Enhanced stratospheric water vapor over the summertime continental United States and the role of overshooting convection
The impact of current CH4 and N2O atmospheric loss process uncertainties on calculated ozone abundances and trends Fleming, E.L., et al. (2015), The impact of current CH4 and N2O atmospheric loss process uncertainties on calculated ozone abundances and trends, J. Geophys. Res., 120, 5267-5293, doi:10.1002/2014JD022067. Read more about The impact of current CH4 and N2O atmospheric loss process uncertainties on calculated ozone abundances and trends
Comparison of OMI NO2 observations and their seasonal and weekly cycles with ground-based measurements in Helsinki Ialongo, I., et al. (2016), Comparison of OMI NO2 observations and their seasonal and weekly cycles with ground-based measurements in Helsinki, Atmos. Meas. Tech., 9, 5203-5212, doi:10.5194/amt-9-5203-2016. Read more about Comparison of OMI NO2 observations and their seasonal and weekly cycles with ground-based measurements in Helsinki
Interannual variations of MLS carbon monoxide induced by solar cycle Lee, J.N., et al. (2013), Interannual variations of MLS carbon monoxide induced by solar cycle, Journal of Atmospheric and Solar-Terrestrial Physics, 102, 99-104. Read more about Interannual variations of MLS carbon monoxide induced by solar cycle
Line parameters including temperature dependences of self- and air-broadened line shapes of 12C16O2: 1.6-μm region Devi, V.M., et al. (2016), Line parameters including temperature dependences of self- and air-broadened line shapes of 12C16O2: 1.6-μm region, J. Quant. Spectrosc. Radiat. Transfer, 177, 117-144, doi:10.1016/j.jqsrt.2015.12.020. Read more about Line parameters including temperature dependences of self- and air-broadened line shapes of 12C16O2: 1.6-μm region