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Chloromethyl-modified Ru(ii) complexes enabling large pH jumps at low concentrations through photoinduced hydrolysis

机译:通过光致水解使得大pH的氯甲基改性的Ru(II)配合物能够以低浓度跳跃

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Photoacid generators (PAGs) are finding increasing applications in spatial and temporal modulation of biological events in vitro and in vivo . In these applications, large pH jumps at low PAG concentrations are of great importance to achieve maximal expected manipulation but minimal unwanted interference. To this end, both high photoacid quantum yield and capacity are essential, where the capacity refers to the proton number that a PAG molecule can release. Up to now, most PAGs only produce one proton for each molecule. In this work, the hydrolysis reaction of benzyl chlorides was successfully leveraged to develop a novel type of PAG. Upon visible light irradiation, Ru( II ) polypyridyl complexes modified with chloromethyl groups can undergo full hydrolysis with photoacid quantum yield as high as 0.6. Depending on the number of the chloromethyl groups, the examined Ru( II ) complexes can release multiple protons per molecule, leading to large pH jumps at very low PAG concentrations, a feature particularly favorable for bio-related applications.
机译:Photoacid发电机(PAG)在体外和体内发现了生物事件的空间和时间调制越来越多的应用。在这些应用中,在低PAG浓度下大的pH跳跃对于实现最大预期操纵但最小的不希望的干扰是非常重要的。为此,既有高光酸量子产量和容量则是必不可少的,其中容量是指PAG分子可以释放的质子编号。到目前为止,大多数PAG仅为每个分子产生一个质子。在这项工作中,成功地利用苄基氯化物的水解反应,以开发一种新型的PAG。在可见光照射时,用氯甲基改性的Ru(II)甲吡啶络合物可以用光酸量子产率高达0.6来进行全水解。取决于氯甲基的数量,所研究的Ru(II)配合物可以每分子释放多个质子,导致大的pAG跳跃在非常低的PAG浓度下,该特征特别有利于生物相关的应用。

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