1 |
Atomic resolution imaging of Si(100) 1 x 1 : 2H dihydride surface with noncontact atomic force microscopy (NC-AFM) Araragi S, Yoshimoto A, Nakata N, Sugawara Y, Morita S Applied Surface Science, 188(3-4), 272, 2002 |
2 |
A new electron-transfer donor for photoinduced electron transfer in polypyridyl molecular assemblies Partigianoni CM, Chodorowski-Kimmes S, Treadway JA, Striplin D, Trammell SA, Meyer TJ Inorganic Chemistry, 38(6), 1193, 1999 |
3 |
Quantum mechanical study of time-dependent energy transfer between perturbers in a Scheibe aggregate Engelhard S, Faisal FHM Journal of Chemical Physics, 110(7), 3596, 1999 |
4 |
Voltammetric determination of electron transfer kinetic parameters in hydroquinone-terminated self-assembled monolayers on gold Hong HG, Park W, Yu E Journal of Electroanalytical Chemistry, 476(2), 177, 1999 |
5 |
De novo design of protein function: Predictable structure-function relationships in synthetic redox proteins Mutz MW, Case MA, Wishart JF, Ghadiri MR, McLendon GL Journal of the American Chemical Society, 121(4), 858, 1999 |
6 |
Surface-enhanced Raman scattering (SERS) from azobenzene self-assembled "sandwiches" Yu HZ, Zhang J, Zhang HL, Liu ZF Langmuir, 15(1), 16, 1999 |
7 |
Electron transfer between bases in double helical DNA Kelley SO, Barton JK Science, 283(5400), 375, 1999 |
8 |
A reinvestigation by circular dichroism and NMR : Ruthenium(II) and rhodium(III) metallointercalators do not bind cooperatively to DNA Franklin SJ, Treadway CR, Barton JK Inorganic Chemistry, 37(20), 5198, 1998 |
9 |
An ab initio study of specific solvent effects on the electronic coupling element in electron transfer reactions Henderson TM, Cave RJ Journal of Chemical Physics, 109(17), 7414, 1998 |
10 |
A two-dimensional Born-Oppenheimer treatment of intramolecular electron transfer reactions Basilevsky MV, Rostov IV, Newton MD Journal of Electroanalytical Chemistry, 450(1), 69, 1998 |