“…In recent years, experimental and theoretical investigations of hydroxy-substituted and halogenated alkoxy radicals have been reported. − To understand the OH-initiated oxidation mechanism of isoprene in the presence of O 2 and NO in the atmosphere, the intermediate δ-hydroxyalkoxy channel was studied using the laser photolysis-laser-induced fluorescence (LP-LIF) and isotopic labeling techniques . Smog chamber/Fourier transform infrared (FTIR) and theoretical methods were applied in studies of β, γ, and δ-hydroxyalkoxy radicals, and the results show that decomposition was the atmospheric fate of β- and γ-hydroxyalkoxy, while for the δ-hydroxyalkoxy radicals, the decomposition pathway was unlikely to be important. , Chhantyal-Pun et al obtained the LIF spectra of FCH 2 CH 2 O but only observed fragments HCHO and CH 2 CHO in the attempt to record the LIF spectra of ClCH 2 CH 2 O, BrCH 2 CH 2 O, and HOCH 2 CH 2 O via photolysis of their corresponding nitrite precursors. , The long-range substitution effects in the LIF spectra of CH x F 3– x CH 2 O radicals were further revealed by Koncz and colleagues . However, despite multiple efforts, the unimolecular dissociation mechanism of XCH 2 CH 2 O (X = F, Cl, Br) is still not fully resolved. , …”