1 |
Theoretical study of the pyrolysis of vanillin as a model of secondary lignin pyrolysis Wang M, Liu C, Xu XX, Li Q Chemical Physics Letters, 654, 41, 2016 |
2 |
Thermal modes of bimolecular exothermic reactions: Concentration limits of ignition Filimonov VY Combustion and Flame, 161(5), 1172, 2014 |
3 |
Kinetic modeling of large-scale reaction systems Ho TC Catalysis Reviews-Science and Engineering, 50(3), 287, 2008 |
4 |
Product rotational polarization: Stereodynamics of the reaction Cl(P-2(3/2))+CD4(v=0,j=0)-> DCl(v(')=0,j '=1)+CD3 Zhang L, Chen MD, Wang ML, Han KL Journal of Chemical Physics, 112(8), 3710, 2000 |
5 |
The product rovibrational and spin-orbit state dependent dynamics of the complex reaction H+CO2 -> OH((2)Pi;nu,N,Omega, f)+CO: Memories of a lifetime Brouard M, Hughes DW, Kalogerakis KS, Simons JP Journal of Chemical Physics, 112(10), 4557, 2000 |
6 |
Rotational and translational energy distributions of CN(v=0,J) from the hot atom reactions: H+XCN -> HX+CN(v=0,J), where X=Br, Cl, and CN He G, Tokue I, Macdonald RG Journal of Chemical Physics, 112(15), 6689, 2000 |
7 |
Reversible fluorescence quenching: Generalized Stern-Volmer equations on the basis of self-consistent quenching constant relations Naumann W Journal of Chemical Physics, 112(16), 7152, 2000 |
8 |
Excited-state reversible geminate reaction. I. Two different lifetimes Gopich IV, Solntsev KM, Agmon N Journal of Chemical Physics, 110(4), 2164, 1999 |
9 |
Fluorescence quenching by reversible excitation transfer: Application of a hierarchy approach to a pseudo first-order model Naumann W Journal of Chemical Physics, 110(8), 3926, 1999 |
10 |
Long time behavior of reversible diffusion-influenced reaction perturbed by photolysis: Brownian dynamics simulation Kim H, Yang M, Shin KJ Journal of Chemical Physics, 110(8), 3946, 1999 |