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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Template-free synthesis of carbon-doped boron nitride nanosheets for enhanced photocatalytic hydrogen evolution
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Template-free synthesis of carbon-doped boron nitride nanosheets for enhanced photocatalytic hydrogen evolution

机译:无碳掺杂氮化硼纳米片的无模板合成,用于增强光催化氢气进化

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摘要

Photocatalytic hydrogen production from water is a promising strategy for the direct conversion of sunlight into chemical energy, which is considered as a long-term and sustainable solution to address worldwide energy and environmental issues. Herein, we develop carbon doped boron nitride (BCN) as metal-free photocatalysts by using solid-gas reaction and molecular design method of boron source. Four kinds of boron carbon nitride (BCN) were synthesized through mixed glucoses with melamine phosphate borate (MPB), melamine borate (MB), boric acid (BA) and boron oxide (BO), respectively. It can be found that the morphology of BCN-MPB (nanosheets) is different from bulk BCN-MB, bulk BCN-BA and bulk BCN-BO. The BCN-MPB nanosheets show much higher specific surface area, the longer lifetime of photoexcited charge carriers, and the stronger electron transport ability compared to those of bulk BCN. Thus, BCN-MPB nanosheets exhibit significantly improved photocatalytic hydrogen activities under visible light illumination compared to those of bulk BCN. Our work represents a facile and template-free synthesis strategy for the rational design of eco-friendly, stable and inexpensive photocatalysts, and paves new pathways for tuning their photoreactivity in sustainable light-to-energy conversion.
机译:来自水的光催化氢气生产是阳光直接转化为化学能的有希望的策略,被认为是解决全球能源和环境问题的长期和可持续的解决方案。在此,通过使用硼源的固体气体反应和分子设计方法,将碳掺杂的氮化硼(BCN)作为无金属光催化剂。通过用三聚氰胺磷酸硼酸盐(MPB),三聚氰胺硼酸酯(MB),硼酸(BA)和氧化硼(BO)来合成四种硼碳氮化物(BCN)。可以发现,BCN-MPB(纳米片)的形态与散装BCN-MB,散装BCN-BA和散装BCN-BO不同。 BCN-MPB纳米片显示出更高的比表面积,相对于散装BCN相比,光屏蔽电荷载体的寿命较长,以及更强的电子传输能力。因此,与散装BCN的那些相比,BCN-MPB纳米片显示出可见光照明下的显着改善的光催化氢气活性。我们的工作代表了一种适用于环保,稳定且廉价的光催化剂的合理设计的易于和模板的合成策略,并铺设了新的途径,用于调整可持续光到能量转换中的光反应性。

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