Citation: R. Amunugama et Mt. Rodgers, Periodic trends in the binding of metal ions to pyrimidine studied by threshold collision-induced dissociation and density functional theory, J PHYS CH A, 105(43), 2001, pp. 9883-9892
Citation: Mt. Rodgers, Substituent effects in the binding of alkali metal ions to pyridines studied by threshold collision-induced dissociation and ab initio theory: The aminopyridines, J PHYS CH A, 105(35), 2001, pp. 8145-8153
Citation: Mt. Rodgers, Substituent effects in the binding of alkali metal ions to pyridines, studied by threshold collision-induced dissociation and ab initio theory: The methylpyridines, J PHYS CH A, 105(11), 2001, pp. 2374-2383
Citation: R. Amunugama et Mt. Rodgers, Absolute alkali metal ion binding affinities of several azines determined by threshold collision-induced dissociation and ab initio theory, INT J MASS, 196, 2000, pp. 439-457
Citation: Pb. Armentrout et Mt. Rodgers, An absolute sodium cation affinity scale: Threshold collision-induced dissociation experiments and ab initio theory, J PHYS CH A, 104(11), 2000, pp. 2238-2247
Citation: Mt. Rodgers et Pb. Armentrout, Noncovalent metal-ligand bond energies as studied by threshold collision-induced dissociation, MASS SPECTR, 19(4), 2000, pp. 215-247
Citation: Mt. Rodgers et al., Periodic trends in the binding of metal ions to pyridine studied by threshold collision-induced dissociation and density functional theory, J AM CHEM S, 122(44), 2000, pp. 10969-10978
Citation: Mt. Rodgers et Pb. Armentrout, Noncovalent interactions of nucleic acid bases (uracil, thymine, and adenine) with alkali metal ions. Threshold collision-induced dissociation and theoretical studies, J AM CHEM S, 122(35), 2000, pp. 8548-8558
Citation: Mt. Rodgers et Pb. Armentrout, Absolute alkali metal ion binding affinities of several azoles determined by threshold collision-induced dissociation, INT J MASS, 187, 1999, pp. 359-380
Citation: Mt. Rodgers et al., Reactions of Cu+(S-1 and D-3) with O-2, CO, CO2, N-2, NO, N2O, and NO2 studied by guided ion beam mass spectrometry, INT J MASS, 183, 1999, pp. 99-120
Citation: Mt. Rodgers et Pb. Armentrout, Absolute binding energies of sodium ions to short chain alcohols, CnH2n+2O, n=1-4, determined by threshold collision-induced dissociation experimentsand ab initio theory, J PHYS CH A, 103(25), 1999, pp. 4955-4963