Simulation Studies of Recombination Kinetics and Spin Dynamics in Radiation Chemistry
by
Amit Agarwal
Book Details
Format
Hardback or Cased Book
Book Series
Springer Theses
ISBN-10
3319062719
ISBN-13
9783319062716
Publisher
Springer International Publishing AG
Imprint
Springer International Publishing AG
Country of Manufacture
CH
Country of Publication
GB
Publication Date
May 13th, 2014
Print length
339 Pages
Weight
688 grams
Dimensions
24.20 x 16.10 x 2.40 cms
Ksh 16,200.00
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Amit Agarwal’s thesis reports a substantial contribution to the microscopic simulation of radiation chemical reactions. The work in this thesis can be applied to a wide number of fields including the nuclear industry, medicine, food treatment, polymer curing, the preparation of nano-colloids, power generation and waste disposal.
Amit Agarwal’s thesis reports a substantial contribution to the microscopic simulation of radiation chemical reactions. In his research Agarwal extends existing models to further understand scavenging, spin and relaxation effects. This research has advanced the development of both the Monte Carlo Random Flights and the Independent Reaction Times (IRT) simulation tools. Particular highlights are the extension of these tools to include both the spin-exchange interaction and spin relaxation, both of which are influential in radiolytic systems where many reactions are spin-controlled. In addition, the study has led to the discovery of a novel correlation of the scavenging rate with the recombination time in low permittivity solvents. This finding goes against existing assumptions underlying the theory of diffusion kinetics while still being accommodated in the IRT method which demonstrates the power of this unconventional approach. The work in this thesis can be applied to a wide number of fields including the nuclear industry, medicine, food treatment, polymer curing, the preparation of nano-colloids, power generation and waste disposal.
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