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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >γ Radiolysis of C_(60) fullerene in water and water/ammonia mixtures: Relevance of fullerene fate in ices of interstellar medium
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γ Radiolysis of C_(60) fullerene in water and water/ammonia mixtures: Relevance of fullerene fate in ices of interstellar medium

机译:水和水/氨混合物中C_(60)富勒烯的γ辐解:星际介质冰中富勒烯命运的相关性

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摘要

The γ radiolysis of fullerene C_(60) dispersed in H _2O, H_2O/NH_3, H_2O/methanol and H _2O/NH_3/methanol was studied at 250 and 500 kGy. It was found that C_(60) originally insoluble in the above mentioned hosting matrix became soluble as a consequence of multiple hydroxylation and oxidation reaction produced by the free radicals generated by the radiolysis of the hosting matrix. The changes undergone by C_(60) were studied by infrared spectroscopy (FT-IR) and by electronic absorption spectroscopy. The astrochemical consequences of the present study are that C_(60) ejected in the interstellar medium for instance from protoplanetary and planetary nebulae can condense together with water and other ices in dense molecular clouds. Under the action of high energy radiation C_(60) reacts with the free radicals generated from the matrix where it is embedded it is solubilized and consequently its carbon content becomes available for further abiotic processes of synthesis of molecules of astrobiological interest. The behavior of C_(60) appears comparable to that of common PAHs which are also hydroxylated and oxidized under similar conditions.
机译:研究了在250 kGy和500 kGy下富勒烯C_(60)分散在H _2O,H_2O / NH_3,H_2O /甲醇和H _2O / NH_3 /甲醇中的γ辐射。发现原本不溶于上述宿主基质中的C_(60)变得可溶,这是由于宿主基质的辐射分解所产生的自由基所引起的多次羟基化和氧化反应的结果。通过红外光谱(FT-IR)和电子吸收光谱研究了C_(60)的变化。本研究的天化学结果是,例如从原行星和行星状星云喷射到星际介质中的C_(60)可以与水和其他冰凝结在稠密的分子云中。在高能辐射的作用下,C_(60)与从基质中嵌入的自由基产生的自由基发生反应,使其溶解,因此其碳含量可用于合成具有非生物生物学意义的分子的其他非生物过程。 C_(60)的行为似乎与普通PAH的行为相当,后者在相似条件下也会被羟基化和氧化。

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