Zhou Baowen, Song Jinliang, Zhou Huacong, Wu Tianbin, Han Buxing
Beijing National Laboratory for Molecular Sciences , CAS Key Laboratory of Colloid and Interface and Thermodynamics , Institute of Chemistry , Chinese Academy of Sciences , Beijing 100190 , China . Email:
Chem Sci. 2016 Jan 1;7(1):463-468. doi: 10.1039/c5sc03178h. Epub 2015 Oct 9.
Direct utilization of the abundant hydrogen and oxygen in water for organic reactions is very attractive and challenging in chemistry. Herein, we report the first work on the utilization of the hydrogen in water for the hydrogenation of various organic compounds to form valuable chemicals and the oxygen for the oxidation of glucose, simultaneously by photocatalysis. It was discovered that various unsaturated compounds could be efficiently hydrogenated with high conversion and selectivity by the hydrogen from water splitting and glucose reforming over Pd/TiO under UV irradiation (350 nm). At the same time, glucose was oxidated by the hydroxyl radicals from water splitting and the holes caused by UV irradiation to form biomass-derived chemicals, such as arabinose, erythrose, formic acid, and hydroxyacetic acid. Thus, the hydrogen and oxygen were used ideally. This work presents a new and sustainable strategy for hydrogenation and biomass conversion by using the hydrogen and oxygen in water.
在化学领域,直接利用水中丰富的氢和氧进行有机反应极具吸引力,但也面临挑战。在此,我们报告了首例通过光催化同时利用水中的氢将各种有机化合物氢化以形成有价值的化学品,并利用水中的氧氧化葡萄糖的工作。研究发现,在紫外光(350 nm)照射下,通过水分解产生的氢和葡萄糖重整产生的氢,各种不饱和化合物能够在Pd/TiO₂上以高转化率和选择性进行高效氢化。同时,葡萄糖被水分解产生的羟基自由基以及紫外光照射产生的空穴氧化,形成生物质衍生的化学品,如阿拉伯糖、赤藓糖、甲酸和羟基乙酸。因此,氢和氧得到了理想的利用。这项工作提出了一种利用水中的氢和氧进行氢化及生物质转化的新型可持续策略。