scholarly journals Dynamics of methyl radical formation by 266 nm photolysis of xylenes and mesitylene

Author(s):  
Namitha Brijit Bejoy ◽  
Monali Kawade ◽  
Sumitra Singh ◽  
G Naresh Patwari

The 266 nm photodissociation of three xylene isomers and mesitylene leading to the formation of methyl radical was examined. The kinetic energy release profiles for the methyl radical were almost identical for all the three isomers of xylene and mesitylene, while substantial differences were observed for the corresponding profiles of the co-fragment produced by loss of one methyl group. This observation be attributed to the formation of the methyl radical from alternate channels. The total kinetic energy distribution profiles were rationalized based on the dissociation of {sp2}C–C{sp3} bond in the cationic state, wherein the {sp2}C–C{sp3} bond dissociation energy is lowered relative to the ground state. The dissocaiton in the cationic state follows a resonant three-photon absorption process, resulting in maximum total kinetic energy of about 1.6 – 1.8 eV for the photofragments. A results in. Fitting of the TKER distribution profiles to empirical function reveals that the dynamics of {sp2}C–C{sp3} bond dissociation is insensitive to the position of substitution but marginally dependent on the number of methyl groups.

2016 ◽  
Vol 194 ◽  
pp. 81-94 ◽  
Author(s):  
Dmitry V. Makhov ◽  
Todd J. Martinez ◽  
Dmitrii V. Shalashilin

We present an account of our recent effort to improve simulation of the photodissociation of small heteroaromatic molecules using the Ab Initio Multiple Cloning (AIMC) algorithm. The ultimate goal is to create a quantitative and converged technique for fully quantum simulations which treats both electrons and nuclei on a fully quantum level. We calculate and analyse the total kinetic energy release (TKER) spectra and Velocity Map Images (VMI), and compare the results directly with experimental measurements. In this work, we perform new extensive calculations using an improved AIMC algorithm that now takes into account the tunnelling of hydrogen atoms. This can play an extremely important role in photodissociation dynamics.


2018 ◽  
Vol 169 ◽  
pp. 00024 ◽  
Author(s):  
F. Tovesson ◽  
D. Duke ◽  
V. Geppert-Kleinrath ◽  
B. Manning ◽  
D. Mayorov ◽  
...  

Different aspects of the nuclear fission process have been studied at Los Alamos Neutron Science Center (LANSCE) using various instruments and experimental techniques. Properties of the fragments emitted in fission have been investigated using Frisch-grid ionization chambers, a Time Projection Chamber (TPC), and the SPIDER instrument which employs the 2v-2E method. These instruments and experimental techniques have been used to determine fission product mass yields, the energy dependent total kinetic energy (TKE) release, and anisotropy in neutron-induced fission of U-235, U-238 and Pu-239.


1985 ◽  
Vol 31 (4) ◽  
pp. 1550-1552 ◽  
Author(s):  
V. E. Viola ◽  
K. Kwiatkowski ◽  
M. Walker

2020 ◽  
Vol 102 (6) ◽  
Author(s):  
A. Pica ◽  
A. T. Chemey ◽  
L. Yao ◽  
W. Loveland ◽  
H. Y. Lee ◽  
...  

2014 ◽  
Vol 89 (5) ◽  
Author(s):  
R. Yanez ◽  
L. Yao ◽  
J. King ◽  
W. Loveland ◽  
F. Tovesson ◽  
...  

2021 ◽  
Vol 252 ◽  
pp. 07004
Author(s):  
Ashley Pica ◽  
Alexander Chemey ◽  
Walter Loveland

The total kinetic energy (TKE) release in the fast neutron-induced fission of various actinide nuclei was measured for neutron energies for En =2.6-100 MeV at the Weapons Neutron Research facility of the Los Alamos National Laboratory. The data are compared to the GEF model of the fission process. The variances of the TKE distributions appear to decrease with increasing Z and A of the fissioning systems.


1983 ◽  
Vol 124 (3-4) ◽  
pp. 161-164 ◽  
Author(s):  
P. David ◽  
J. Hartfiel ◽  
H. Janszen ◽  
T. Johansson ◽  
J. Konijn ◽  
...  

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