Prediction and Evaluation of the Piperonylidene Analogue of PBN by DFT Calculations & NBT Reduction Mediated Spectral Assay

Two linear spin traps, α‐piperonyl‐N‐tert‐butylnitrone (PiBN) and its phosphoryl analogue N‐(α‐ piperonylidene)‐1‐diethoxyphosphoryl‐1‐methylethylamine N‐oxide (PiPN), have been first synthesized and structurally characterized. To improve the limitation in evaluating the kinetics of O2−·‐spin trappi...

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Veröffentlicht in:Chinese journal of chemistry 2008-10, Vol.26 (10), p.1780-1786
Hauptverfasser: JI, Yi-Qiong, WANG, Zhao-Yi, WANG, Lan-Fen, LIU, Ke-Jian, LIU, Yang
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container_issue 10
container_start_page 1780
container_title Chinese journal of chemistry
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creator JI, Yi-Qiong
WANG, Zhao-Yi
WANG, Lan-Fen
LIU, Ke-Jian
LIU, Yang
description Two linear spin traps, α‐piperonyl‐N‐tert‐butylnitrone (PiBN) and its phosphoryl analogue N‐(α‐ piperonylidene)‐1‐diethoxyphosphoryl‐1‐methylethylamine N‐oxide (PiPN), have been first synthesized and structurally characterized. To improve the limitation in evaluating the kinetics of O2−·‐spin trapping in the aqueous solution, a nitroblue tetrazolium (NBT)‐mediated spectral assay has been first fulfilled and examined in this work. On the other hand, to simplify the theoretical prediction on the kinetics, a density functional theory (DFT) LUMO calculation at the B3LYP/6‐311+G(d,p)//B3LYP/6‐31G(d) level has been comparatively performed. All the results, when combined with calculating their optimized spin adducts, reveal that an introduction of the phosphoryl group not only can significantly stabilize its superoxide spin adducts, but increases the rate constant for the O2−·‐spin trapping as well.
doi_str_mv 10.1002/cjoc.200890321
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subjects LUMO
NBT
phosphoryl group
spin trapping
superoxide
title Prediction and Evaluation of the Piperonylidene Analogue of PBN by DFT Calculations & NBT Reduction Mediated Spectral Assay
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