1 |
Sunlight-Induced Molecular Progression of Oil into Oxidized Oil Soluble Species, Interfacial Material, and Dissolved Organic Matter Zito P, Podgorski DC, Bartges T, Guillemette F, Roebuck JA, Spencer RGM, Rodgers RP, Tarr MA Energy & Fuels, 34(4), 4721, 2020 |
2 |
Advances in Asphaltene Petroleomics. Part 4. Compositional Trends of Solubility Subfractions Reveal that Polyfunctional Oxygen-Containing Compounds Drive Asphaltene Chemistry Chacon-Patino ML, Smith DF, Hendrickson CL, Marshall AG, Rodgers RP Energy & Fuels, 34(3), 3013, 2020 |
3 |
Comprehensive Compositional and Structural Comparison of Coal and Petroleum Asphaltenes Based on Extrography Fractionation Coupled with Fourier Transform Ion Cyclotron Resonance MS and MS/MS Analysis Niles SF, Chacon-patino ML, Smith DF, Rodgers RP, Marshall AG Energy & Fuels, 34(2), 1492, 2020 |
4 |
Probing Aggregation Tendencies in Asphaltenes by Gel Permeation Chromatography. Part 1: Online Inductively Coupled Plasma Mass Spectrometry and Offline Fourier Transform Ion Cyclotron Resonance Mass Spectrometry Putman JC, Moulian R, Barrere-Mangote C, Rodgers RP, Bouyssiere B, Giusti P, Marshall AG Energy & Fuels, 34(7), 8308, 2020 |
5 |
Compositional Trends for Total Vanadium Content and Vanadyl Porphyrins in Gel Permeation Chromatography Fractions Reveal Correlations between Asphaltene Aggregation and Ion Production Efficiency in Atmospheric Pressure Photoionization Chacon-Patino ML, Moulian R, Barrere-Mangote C, Putman JC, Weisbrod CR, Blakney GT, Bouyssiere B, Rodgers RP, Giusti P Energy & Fuels, 34(12), 16158, 2020 |
6 |
Tracking Elemental Composition through Hydrotreatment of an Upgraded Pyrolysis Oil Blended with a Light Gas Oil Ware RL, Rodgers RP, Marshall AG, Mante OD, Dayton DC, Verdier S, Gabrielsen J, Rowland SM Energy & Fuels, 34(12), 16181, 2020 |
7 |
Understanding Asphaltene Fraction Behavior through Combined Quartz Crystal Resonator Sensor, FT-ICR MS, GPC ICP HR-MS, and AFM Characterization. Part I: Extrography Fractionations Acevedo N, Moulian R, Chacon-Patino ML, Mejia A, Radji S, Daridon JL, Barrere-Mangote C, Giusti P, Rodgers RP, Piscitelli V, Castillo J, Carrier H, Bouyssiere B Energy & Fuels, 34(11), 13903, 2020 |
8 |
Molecular Characterization of Photochemically Produced Asphaltenes via Photooxidation of Deasphalted Crude Oils Glattke TJ, Chacon-Patino ML, Marshall AG, Rodgers RP Energy & Fuels, 34(11), 14419, 2020 |
9 |
Molecular Composition of Photooxidation Products Derived from Sulfur-Containing Compounds Isolated from Petroleum Samples Niles SF, Chacon-Patino ML, Marshall AG, Rodgers RP Energy & Fuels, 34(11), 14493, 2020 |
10 |
Probing Aggregation Tendencies in Asphaltenes by Gel Permeation Chromatography. Part 2: Online Detection by Fourier Transform Ion Cyclotron Resonance Mass Spectrometry and Inductively Coupled Plasma Mass Spectrometry Putman JC, Moulian R, Smith DF, Weisbrod CR, Chacon-Patino ML, Corilo YE, Blakney GT, Rumancik LE, Barrere-Mangote C, Rodgers RP, Giusti P, Marshall AG, Bouyssiere B Energy & Fuels, 34(9), 10915, 2020 |