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首页> 外文期刊>Angewandte Chemie >Host-Guest Complexation of Amphiphilic Molecules at the Air-Water Interface Prevents Oxidation by Hydroxyl Radicals and Singlet Oxygen
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Host-Guest Complexation of Amphiphilic Molecules at the Air-Water Interface Prevents Oxidation by Hydroxyl Radicals and Singlet Oxygen

机译:Amphiphilic分子在空气 - 水界面的宿主络合防止羟基自由基和单次氧气氧化

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摘要

The oxidation of antioxidants by oxidizers imposes great challenges to both living organisms and the food industry. Here we show that the host-guest complexation of the carefully designed, positively charged, amphiphilic guanidinocalix[5]arene pentadodecyl ether (GC5A-12C) and negatively charged oleic acid (OA), a well-known cell membrane antioxidant, prevents the oxidation of the complex monolayers at the air-water interface from two potent oxidizers hydroxyl radicals (OH) and singlet delta oxygen (SDO). OH is generated from the gas phase and attacks from the top of the monolayer, while SDO is generated inside the monolayer and attacks amphiphiles from a lateral direction. Field-induced droplet ionization mass spectrometry results have demonstrated that the host-guest complexation achieves steric shielding and prevents both types of oxidation as a result of the tight and "sleeved in" physical arrangement, rather than the chemical reactivity, of the complexes.
机译:氧化剂抗氧化剂的氧化对生物体和食品工业造成了极大的挑战。 在这里,我们显示仔细设计,带正电荷的宿主融合,氨基硅氧基丙酮(GC5A-12C)和带负电荷的油酸(OA),众所周知的细胞膜抗氧化剂,可防止氧化防止氧化 来自两个有效氧化剂羟基自由基(OH)和单次δ氧(SDO)的空气水界面的复合单层。 OH由气相产生并从单层顶部攻击,而SDO在单层内部产生并且从横向方向攻击两双层。 现场诱导的液滴电离质谱结果表明,宿主客观络合达到空间屏蔽,并防止其两种类型的氧化,而是络合物的物理布置,而不是化学反应性的“袖子”。

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