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Computational Investigation of the Pyrolysis Product Selectivity for alpha-Hydroxy Phenethyl Phenyl Ether and Phenethyl Phenyl Ether: Analysis of Substituent Effects and Reactant Conformer Selection Beste A, Buchanan AC Journal of Physical Chemistry A, 117(15), 3235, 2013 |
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Computational study of bond dissociation enthalpies for lignin model compounds: beta-5 Arylcoumaran Younker JM, Beste A, Buchanan AC Chemical Physics Letters, 545, 100, 2012 |
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Kinetic simulation of the thermal degradation of phenethyl phenyl ether, a model compound for the beta-O-4 linkage in lignin Beste A, Buchanan AC Chemical Physics Letters, 550, 19, 2012 |
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Role of Carbon-Carbon Phenyl Migration in the Pyrolysis Mechanism of beta-O-4 Lignin Model Compounds: Phenethyl Phenyl Ether and alpha-Hydroxy Phenethyl Phenyl Ether Beste A, Buchanan AC Journal of Physical Chemistry A, 116(50), 12242, 2012 |
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Computational prediction of alpha/beta selectivities in the pyrolysis of oxygen-substituted phenethyl phenyl ethers Beste A, Buchanan AC, Harrison RJ Journal of Physical Chemistry A, 112(22), 4982, 2008 |
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Oxygen substituent effects in the pyrolysis of phenethyl phenyl ethers Britt PF, Kidder MK, Buchanan AC Energy & Fuels, 21(6), 3102, 2007 |
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Kinetic analysis of the pyrolysis of phenethyl phenyl ether: Computational prediction of alpha/beta-selectivities Beste A, Buchanan AC, Britt PF, Hathorn BC, Harrison RJ Journal of Physical Chemistry A, 111(48), 12118, 2007 |
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Pyrolysis of benzyl phenyl ether confined in mesoporous silica Kidder MK, Britt PF, Buchanan AC Energy & Fuels, 20(1), 54, 2006 |
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Pyrolysis of aromatic carboxylic acid salts: Does decarboxylation play a role in cross-linking reactions? Dabestani R, Britt PF, Buchanan AC Energy & Fuels, 19(2), 365, 2005 |
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Pyrolysis of mesoporous silica-immobilized 1,3-diphenyl propane. Impact of pore confinement and size Kidder MK, Britt PF, Zhang ZT, Dai S, Hagaman EW, Chaffee AL, Buchanan AC Journal of the American Chemical Society, 127(17), 6353, 2005 |