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FeNi intermetallic compound nanoparticles wrapped with N-doped graphitized carbon: a novel cocatalyst for boosting photocatalytic hydrogen evolution

机译:Feni金属间化合物纳米粒子用N掺杂石墨化碳包裹:一种用于促进光催化氢进化的新型助催化剂

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摘要

The loading of noble-metal cocatalysts on photocatalysts can significantly increase the energy conversion efficiency from light to hydrogen (H-2). However, the high cost of noble metals limits their practical application. Therefore, it is of great significance to explore alternative catalysts based on noble-metal-free materials. Herein, FeNi intermetallic compound nanoparticles wrapped with N-doped graphitized carbon (FeNi@NGC) are prepared by a facile pyrolysis approach. The FeNi@NGC is used as a novel cocatalyst of host photocatalysts, such as g-C3N4, to boost their photogenerated charge separation. In an aqueous solution containing triethanolamine and under visible-light irradiation, the optimized FeNi@NGC/g-C3N4 (FNC15) composite photocatalyst exhibits significantly increased PC activity with a H-2 production rate of 2.696 mmol g(-1) h(-1), which is over 283 times that of primary g-C3N4 and even higher than that of 1.0 wt% Pt/g-C3N4. Furthermore, the FNC15 showed excellent stability and reusability. The apparent quantum yield (AQY) of the FNC15 composite photocatalyst reaches 24.78% and 7.28% at 400 nm and 420 nm, respectively. Notably, the FNC15 can promote photocatalytic overall water splitting with an H-2 evolution rate of about 0.167 mmol g(-1) h(-1). Experimental analysis and DFT calculations are performed to investigate the mechanism of excellent PC H-2 evolution. It appears that the FeNi@NGC loading on the surface of host photocatalysts can (i) boost the charge carrier separation and transfer because of the secondary charge transfer in the FeNi intermetallic compound and (ii) ameliorate the kinetics of H-2 evolution on the surface of the photocatalyst and achieve obviously enhanced H-2 generation. This work provides a new strategy for preparing efficient noble-metal-free cocatalysts for boosting photocatalytic H-2 evolution.
机译:光催化剂上的贵金属助催化剂的装载可以显着提高光到氢气的能量转换效率(H-2)。然而,贵金属的高成本限制了它们的实际应用。因此,探索基于无金属材料的替代催化剂具有重要意义。这里,用N掺杂石墨化碳(FENI @ NGC)包裹的FENI金属间化合物纳米颗粒由容易的热解方法制备。 Feni @ NGC用作宿主光催化剂的新型助催化剂,例如G-C3N4,以提高其光生电电荷分离。在含有三乙醇胺的水溶液和在可见光照射下,优化的FENI @ NGC / G-C3N4(FNC15)复合光催化剂表现出显着增加的PC活性,H-2产生速率为2.696mmol G(-1)H( - 1),这是初级G-C3N4的283倍,甚至高于1.0wt%pt / g-c3n4的283倍。此外,FNC15显示出优异的稳定性和可重用性。 FNC15复合光催化剂的表观量子产率(AQY)分别达到400nm和420nm的24.78%和7.28%。值得注意的是,FNC15可以促进光催化的总水分分裂,其H-2进化速率为约0.167mmol G(-1)H(-1)。进行实验分析和DFT计算以研究优异的PC H-2演化的机制。看来,由于FENI金属间化合物中的二次电荷转移和(ii),似乎促进了宿主光催化剂表面上的FENI @ NGC负载可以提高电荷载体分离和转移,并且(II)改善了H-2演化的动力学光催化剂的表面并实现明显增强的H-2代。这项工作提供了一种制备高效贵金属无金属助催化剂的新策略,用于促进光催化H-2进化。

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    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

    South China Agr Univ Dept Phys Guangzhou 510640 Peoples R China;

    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

    Lingnan Normal Univ Inst Phys Chem Sch Chem &

    Chem Engn Zhanjiang 524048 Peoples R China;

    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

    Griffith Univ Ctr Clean Environm &

    Energy Gold Coast Qld 4222 Australia;

    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

    South China Agr Univ Coll Mat &

    Energy Guangzhou 510642 Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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