Loyd J. Burcham, Ph.D.

Affiliations: 
2000 Lehigh University, Bethlehem, PA, United States 
Area:
heterogeneous catalysis
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"Loyd Burcham"
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Israel Wachs grad student 2000 Lehigh University
 (Congoleum)
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Publications

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Burcham LJ, Briand LE, Wachs IE. (2001) Quantification of active sites for the determination of methanol oxidation turn-over frequencies using methanol chemisorption and in situ infrared techniques. 2 - Bulk metal oxide catalysts Langmuir. 17: 6175-6184
Burcham LJ, Briand LE, Wachs IE. (2001) Quantification of active sites for the determination of methanol oxidation turn-over frequencies using methanol chemisorption and in situ infrared techniques. 1: Supported metal oxide catalysts Langmuir. 17: 6164-6174
Burcham LJ, Badlani M, Wachs IE. (2001) The origin of the ligand effect in metal oxide catalysts: Novel fixed-bed in situ infrared and kinetic studies during methanol oxidation Journal of Catalysis. 203: 104-121
Burcham LJ, Deo G, Gao X, et al. (2000) In situ IR, Raman, and UV-Vis DRS spectroscopy of supported vanadium oxide catalysts during methanol oxidation Topics in Catalysis. 11: 85-100
Burcham LJ, Datka J, Wachs IE. (1999) In Situ Vibrational Spectroscopy Studies of Supported Niobium Oxide Catalysts Journal of Physical Chemistry B. 103: 6015-6024
Burcham LJ, Wachs IE. (1999) The origin of the support effect in supported metal oxide catalysts: In situ infrared and kinetic studies during methanol oxidation Catalysis Today. 49: 467-484
Burcham LJ, Wachs IE. (1998) Vibrational analysis of the two non-equivalent, tetrahedral tungstate (WO4) units in Ce2(WO4)3 and La2(WO4)3 Spectrochimica Acta - Part a: Molecular and Biomolecular Spectroscopy. 54: 1355-1368
Ostromecki MM, Burcham LJ, Wachs IE. (1998) The influence of metal oxide additives on the molecular structures of surface tungsten oxide species on alumina. II. In situ conditions Journal of Molecular Catalysis a: Chemical. 132: 59-71
Ostromecki MM, Burcham LJ, Wachs IE, et al. (1998) The influence of metal oxide additives on the molecular structures of surface tungsten oxide species on alumina: I. Ambient conditions Journal of Molecular Catalysis a: Chemical. 132: 43-57
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