研究目的
Investigating the plausible thermal dissociation pathways of diethyl peroxide, di-tert butyl peroxide, and dicumyl peroxide after O-O bond cleavage by photoexcitation, and providing a reliable theoretical framework for interpreting time-resolved optical absorption spectra.
研究成果
Methyl radical elimination is the main dissociation mechanism for the studied peroxides after O-O bond cleavage. M06-2X functional with aug-cc-pVDZ basis set provides accurate relative energies comparable to CCSD(T). TD-DFT with M06-2X is suitable for interpreting transient absorption spectra. The traditionally assigned visible absorption for cumyloxyl radical is disputed, and other transient species like CM18 are proposed based on experimental and theoretical agreement.
研究不足
The study is limited to gas-phase reactions and neglects interactions with non-originating species. The dimensionality of potential energy surfaces increases with molecule size, making it harder to map all stationary points. Multi-step reactions with increasing activation energies are less likely due to rapid thermalization in solvent.
1:Experimental Design and Method Selection:
The study employs density functional theory (DFT) with M06-2X hybrid functional and coupled cluster single double and perturbative triple (CCSD(T)) methods for theoretical calculations. Time-dependent density functional theory (TD-DFT) is used for UV-Vis absorption spectra predictions. Experimental transient absorption spectroscopy is conducted using a femtosecond laser system.
2:Sample Selection and Data Sources:
Diethyl peroxide, di-tert butyl peroxide, and dicumyl peroxide are studied. Dicumyl peroxide is dissolved in UV grade acetonitrile for experiments.
3:List of Experimental Equipment and Materials:
Commercial time-resolved transient absorption spectrometer (Ultrafast Systems, HELIOS), ultrafast Ti:Sapphire pumped femtosecond optical parametric amplifier (Spectra Physics, TOPAS Prime), fast spectrometer (Ocean Optics HR2000+), quartz cuvette, magnetic stirrer, x-y translation stages, lenses, mirrors, fibers, dicumyl peroxide (Aldrich), acetonitrile (Aldrich).
4:Experimental Procedures and Operational Workflow:
Samples are pumped at 257 nm with 14 uJ energy and probed with white light continuum (300-600 nm). Pump and probe beams are overlapped on the sample, separated after the cuvette, and absorbance changes are measured with time delay up to 5 ps. Samples are stirred and cuvette position is changed to minimize degradation.
5:Data Analysis Methods:
DFT and CCSD(T) calculations are performed using Gaussian 09 package. Vibrational frequency analysis, intrinsic reaction coordinate (IRC) calculations, and basis set superposition error (BSSE) corrections are applied. TD-DFT is used for excitation energies and spectra.
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