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Photocatalytic transformations of sulphonamides on titanium dioxide

机译:磺酰胺在二氧化钛上的光催化转化

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Aqueous suspensions of titanium dioxide containing sulphonamides have been irradiated with near-UV light. The transformation processes have been followed by monitoring both the organic intermediates and the final products. The disappearance of sulphonamides and the formation of organic intermediates have been pursued through an HPLUMS instrument.The degradation of all the investigated sulphonamides (sulphamerazine, sulphadiazine, sulphadimethoxine and sulfathiazole) is achieved through the breaking of the S-N bond and through an (OH)-O-. attack on the aromatic rings. The more intriguing matter is the fate of the intermediates originated through the cleavage of the S-N bond. A structure like RNH2 is formed, whose fate is highly dependent on the nature of R. From sulphathiazole and sulphadimethoxine, this intermediates (2,6-dimethoxy-4-aminopyrimidine and 2-aminothiazole) undergo a further degradation, so bringing to the ring-opening and to the release of the nitrogen contained in these structures. In fact, in both cases the parallel release of sulphur and nitrogen from the molecule is realized. Sulphur is finally found as sulphate ions, while nitrogen is transformed into nitrate and ammonium ions. The N-containing intermediates formed from sulphadiazine and sulphamerazine (4-methyl-2-aminopyrimidine) is highly persistent and does not release the nitrogen in the investigated times. (C) 2004 Elsevier B.V. All rights reserved.
机译:含有磺酰胺的二氧化钛水悬浮液已用近紫外光照射。监测有机中间体和最终产品之后,进行转化过程。磺酰胺的消失和有机中间体的形成已通过HPLUMS仪器进行了研究。所有被研究的磺酰胺(磺胺嘧啶,磺胺嘧啶,磺胺二甲氧嘧啶和磺胺噻唑)的降解都是通过SN键的断裂和(OH)- O-。攻击芳香环。更有趣的是中间体的命运是通过S-N键的断裂而产生的。形成了类似RNH2的结构,其命运高度依赖于R的性质。这些中间体(2,6-二甲氧基-4-氨基嘧啶和2-氨基噻唑)从巯基噻唑和磺胺二甲恶嗪中进一步降解,因此带入环中-打开并释放这些结构中包含的氮。实际上,在两种情况下均实现了分子中硫和氮的平行释放。最终发现硫以硫酸根离子的形式出现,而氮则转化为硝酸根和铵离子。由磺胺嘧啶和磺胺嘧啶(4-甲基-2-氨基嘧啶)形成的含氮中间体具有很高的持久性,在研究的时间内不会释放氮。 (C)2004 Elsevier B.V.保留所有权利。

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