Insertion vs. abstraction in the atomic hydrogen+ molecular hydrogen. fwdarw. molecular hydrogen+ atomic hydrogen exchange reaction (original) (raw)

Competition between exchange and dissociation processes in He+H2+ collisions

N Sathyamurthy

Chemical Physics, 1989

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Quantum approaches for the insertion dynamics of the H[sup +]+D[sub 2] and D[sup +]+H[sub 2] reactive collisions

Alfredo Aguado, Octavio Roncero

The Journal of Chemical Physics, 2005

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H(2s)formation inH+-H and H-H collisions

Raúl Mayo

Physical Review A, 1980

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A detailed quantum mechanical and quasiclassical trajectory study on the dynamics of the H[sup +]+H[sub 2]→H[sub 2]+H[sup +] exchange reaction

Javier Aoiz, Niyazi Bulut, Octavio Roncero

The Journal of Chemical Physics, 2006

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Study of theD++H2collision in the small-angle, low-keV energy range

Howard Hayden

Physical Review A, 1981

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The effects of collision energy and vibrational excitation on H+2, HD++He reactions

Ján Ẑabka

The Journal of Chemical Physics, 1984

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State-to-state rotational transitions in H $ _2 +H+ H +H _2 $ collisions at low temperatures

Robert Forrey

2006

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A detailed quantum mechanical and quasiclassical trajectory study on the dynamics of the H++ H2→ H2+ H+ exchange reaction

Octavio Roncero

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High Energy Reactions of Atomic Hydrogen

David Urch

Canadian Journal of Chemistry, 1960

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Cold He+H_{2} collisions near dissociation

Robert Forrey

Physical Review A, 2006

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State-to-state rotational transitions in H[sub 2]+H[sub 2] collisions at low temperatures

Gary Ferland

The Journal of Chemical Physics, 2006

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Experimental and Theoretical Studies of the Isotope Exchange Reaction rmD+rmH3+tormH2rmD++rmH{\rm{D}}+{{\rm{H}}}_{3}^{+}\to {{\rm{H}}}_{2}{{\rm{D}}}^{+}+{\rm{H}}rmD+rmH3+tormH2rmD++rmH

J Liévin

The Astrophysical Journal, 2019

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Differential cross section for the H+D[sub 2]→HD(v[sup ʹ]=1,j[sup ʹ]=2,6,10)+D reaction as a function of collision energy

Richard Zare

The Journal of Chemical Physics, 2007

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Influence of nuclear exchange on nonadiabatic electron processes in H[sup +]+H[sub 2] collisions

C. Illescas

The Journal of Chemical Physics, 2010

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Vibration-vibration and vibration-translation energy transfer in H2-H2 collisions: A critical test of experiment with full-dimensional quantum dynamics

Robert Forrey

The Journal of Chemical Physics, 2013

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Influence of nuclear exchange on nonadiabatic electron processes in H + +H 2 collisions

Clara Illescas

2010

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Differential cross sections for H + D2→ HD(v′ = 2, j′ = 0,3,6,9) + D at center-of-mass collision energies of 1.25, 1.61, and 1.97 eV

Richard Zare

Physical Chemistry Chemical Physics, 2011

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Kinetics and Dynamics of the S(^{1}D_{2})+H_{2}→SH+H Reaction at Very Low Temperatures and Collision Energies

A. Bergeat

Physical Review Letters, 2010

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Measurement of the state-specific differential cross section for the H+D2→HD(vʹ=4, Jʹ=3)+D reaction at a collision energy of 2.2 eV

Richard Zare

The Journal of Chemical Physics, 1995

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Spectroscopy of the transition state (theory). 3. Absorption by triatomic hydrogen (H3.dbldag.) in the three-dimensional reaction atomic hydrogen + molecular hydrogen

Howard Mayne

The Journal of Physical Chemistry, 1984

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Importance of correlation energy in collision dynamics: Quasiclassical trajectory study of collinear He+H2+(υ′)→HeH+ + H using HF and CI potential-energy surfaces

N Sathyamurthy

Chemical Physics, 1981

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Collision energy dependence of the HD(ν[sup ʹ]=2) product rotational distribution of the H+D[sub 2] reaction in the range 1.30–1.89 eV

Andrew E Pomerantz

The Journal of Chemical Physics, 2004

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The O(1D) + H2 (X 1Σ+, v, j) → OH(X 2Π, v′, j′) + H(2S) reaction at low collision energy: when a simple statistical description of the dynamics works

J. Rubayo-soneira, M. González-Martínez

Physical Chemistry Chemical Physics, 2011

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Comprehensive Rate Coefficients for Electron-Collision-Induced Transitions in Hydrogen

Roberto Onofrio

The Astrophysical Journal, 2014

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Collision energy dependence of the HD(nu'=2) product rotational distribution of the H+D2 reaction in the range 1.30-1.89 eV

Richard Zare

Chem Phys, 2004

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Integral rate constant measurements of the reaction H + D2 → HD (v′ = 1, j′) + D at high collision energies

Richard Zare

Chemical Physics Letters, 1993

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The D+H2(v=1,j)→HD(v’,j’)+H reaction. A detailed quasiclassical trajectory study

Javier Aoiz

The Journal of Chemical Physics, 1994

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Plane-wave and common-translation-factor treatments ofHe2++H collisions at high velocities

Luis Méndez

Physical Review A, 1992

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Dynamics of the O(3P) + CH4 hydrogen abstraction reaction at hyperthermal collision energies

J. Espinosa-garcia

Physical Chemistry Chemical Physics, 2014

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Differential cross section for the H+D→HD(v'=1, j'=2,6, 10) +D reaction as a function of collision energy

Richard Zare

The Journal of Chemical Physics, 2007

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On the dynamics of the H++D2(v=0,j=0)→HD+D+ reaction: A comparison between theory and experiment

Octavio Roncero

Journal of Chemical Physics, 2008

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Cross-sections for the H + H2O ? OH + H2 and H + D2O ? OD + HD abstraction reactions

Sarantos Marinakis

Physical Chemistry Chemical Physics, 2004

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Dynamics of vibrationally inelastic collisions in H+−H2: comparing quantum calculations with experiments

Sanjay Kumar

Chemical Physics, 1995

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Correlation between regions in the phase portrait of a hydrogen atom and the type of the products formed in a collision with a proton in one dimension: A classical perspective.

Gunadya Bandarage

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Inelastic processes from vibrationally excited states in slow H^{+}+H_{2} and H+H_{2}^{+} collisions: Excitations and charge transfer

Predrag Krstic

Physical Review A, 2002

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