Advances in Chemical Physics, Volume 149 by Stuart A. Rice, Aaron R. Dinner

By Stuart A. Rice, Aaron R. Dinner

The Advances in Chemical Physics series?the innovative of analysis in chemical physics

The Advances in Chemical Physics sequence offers the chemical physics box with a discussion board for severe, authoritative reviews of advances in each zone of the self-discipline. jam-packed with state-of-the-art examine stated in a cohesive demeanour now not came across in different places within the literature, each one quantity of the Advances in Chemical Physics sequence serves because the ideal complement to any complicated graduate type dedicated to the research of chemical physics.

This quantity explores:

  • Quantum Dynamical Resonances in Chemical Reactions: From A + BC to Polyatomic structures (Kopin Liu)

  • The Multiscale Coarse-Graining approach (Lanyuan Lu and Gregory A. Voth)

  • Molecular Solvation Dynamics from Inelastic X-ray Scattering Measurements (R.H. Coridan and G.C.L. Wong)

  • Polymers lower than Confinement (M. Muthukumar)

  • Computational reports of the homes of DNA-linked Nanomaterials (One-Sun Lee and George C. Schatz)

  • Nanopores: Single-Molecule Sensors of Nucleic Acid dependent Complexes (Amit Meller)

Content:

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By Stuart A. Rice, Aaron R. Dinner

The Advances in Chemical Physics series?the innovative of analysis in chemical physics

The Advances in Chemical Physics sequence offers the chemical physics box with a discussion board for severe, authoritative reviews of advances in each zone of the self-discipline. jam-packed with state-of-the-art examine stated in a cohesive demeanour now not came across in different places within the literature, each one quantity of the Advances in Chemical Physics sequence serves because the ideal complement to any complicated graduate type dedicated to the research of chemical physics.

This quantity explores:

  • Quantum Dynamical Resonances in Chemical Reactions: From A + BC to Polyatomic structures (Kopin Liu)

  • The Multiscale Coarse-Graining approach (Lanyuan Lu and Gregory A. Voth)

  • Molecular Solvation Dynamics from Inelastic X-ray Scattering Measurements (R.H. Coridan and G.C.L. Wong)

  • Polymers lower than Confinement (M. Muthukumar)

  • Computational reports of the homes of DNA-linked Nanomaterials (One-Sun Lee and George C. Schatz)

  • Nanopores: Single-Molecule Sensors of Nucleic Acid dependent Complexes (Amit Meller)

Content:

Show description

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106, 4812 (1997). J. Zhou, J. J. Lin, and K. Liu, Mol. , 108, 957 (2010). J. Zhou, J. J. Lin, and K. Liu, J. Chem. , 121, 813 (2004). A. J. Bray and M. A. Moore, Phys. Rev. , 49, 1545 (1982). A. Schmid, Phys. Rev. , 51, 1506 (1983). S. Chakravarty and A. Leggett, Phys. Rev. , 52, 5 (1984). S. A. Rice and P. Gaspard, Israel. J. , 30, 23 (1990). 76. M. Gruebele, Adv. Chem. , 114, 193 (2000). 77. J. Jortner and R. D. Levine, Israel J. , 30, 207 (1990). 78. 79. 80. 81. 82. K. K. Lenmann, G. Scoles, and B.

S. Rabanos, K. Stark, and H. J. Werner, Chem. Phys. , 223, 215 (1994). 56. J. F. Castillo, D. E. Manolopoulos, K. Stark, and H. J. Werner, J. Chem. , 104, 6531 (1996). 57. D. E. Manolopoulos, J. Chem. Soc. , 93, 673 (1997). 58. K. Liu, R. T. Skodje, and D. E. Manolopoulos, Phys. Chem. , 5, 27 (2002). 59. R. T. Skodje, D. Skouteris, D. E. -H. Lee, F. Dong, and K. Liu, J. Chem. , 112, 4536 (2000). 60. W. H. Miller and J. Z. H. Zhang, J. Phys. , 95, 12 (1991). 61. R. T. Skodje, D. Skouteris, D. E.

15c, where a schematic cut of the multidimensional PES orthogonal to the reaction coordinate in the vicinity of the dynamics well is sketched [70]. As is seen, two potential wells are actually invoked, corresponding adiabatically to the two respective product pairs. The two wells are conceivably separated by a potential barrier; thus, one encounters a prototypical asymmetric double-well problem. Since Fig. 15c is just one such numerous cuts along the reaction coordinate, the associated potential wells and barriers are dynamically varying and evolve as the reaction proceeds.

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