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8. A comprehensive experimental and kinetic modeling study of di-isobutylene isomers: Part 1

10. Designing green chemicals by predicting vaporization properties using explainable graph attention networks.

18. Performance-advantaged ether diesel bioblendstock production by a priori design

22. Top 13 Blendstocks Derived from Biomass for Mixing-Controlled Compression-Ignition (Diesel) Engines: Bioblendstocks with Potential for Decreased Emissions and Improved Operability

25. Advanced Engine and Fuel Technologies Annual Progress Report (FY2019)

26. Top Ten Blendstocks Derived From Biomass For Turbocharged Spark Ignition Engines: Bio-blendstocks With Potential for Highest Engine Efficiency

28. Identification of Key Drivers of Cost and Environmental Impact for Biomass-Derived Fuel for Advanced Multimode Engines Based on Techno-Economic and Life Cycle Analysis

29. Oxidation and pyrolysis of methyl propyl ether

31. Co-Optimization of Fuels & Engines: Properties of Co-Optima Core Research Gasolines

32. Supercritical Methanol Solvolysis and Catalysis for the Conversion of Delignified Woody Biomass into Light Alcohol Gasoline Bioblendstock

34. Bioderived ether design for low soot emission and high reactivity transport fuels

35. Bioderived ether design for low emission and high reactivity transport fuels

38. Oxidation and pyrolysis of methyl propyl ether

40. Synthesis of Butyl-Exchanged Polyoxymethylene Ethers as Renewable Diesel Blendstocks with Improved Fuel Properties

41. Fuel Property Effects of a Broad Range of Potential Biofuels on Mixing Control Compression Ignition Engine Performance and Emissions

42. Investigation of structural effects of aromatic compounds on sooting tendency with mechanistic insight into ethylphenol isomers

43. Elucidating the chemical pathways responsible for the sooting tendency of 1 and 2-phenylethanol

46. Summary of High-Octane Mid-Level Ethanol Blends Study

48. Screening of Potential Biomass-Derived Streams as Fuel Blendstocks for Mixing Controlled Compression Ignition Combustion

50. Experimental and theoretical insight into the soot tendencies of the methylcyclohexene isomers

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