首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The effect of single atom substitution (O, S or Se) on photocatalytic hydrogen evolution for triazine-based conjugated porous polymers
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The effect of single atom substitution (O, S or Se) on photocatalytic hydrogen evolution for triazine-based conjugated porous polymers

机译:单原子取代(O,S或Se)对三嗪型共轭多孔聚合物光催化氢逸出的影响

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Conjugated porous polymers (CPPs) are an emerging class of promising photocatalysts due to their large specific surface areas and adjustable optical band gaps. We previously reported a novel CPP (P1) through linking donor-acceptor (D-A) type pyrazole-benzothiadiazole-pyrazole light-absorbing units through triazine units with promising photocatalytic hydrogen evolution behavior. The aim of this work was to investigate the effect of one-atom substitution (O, S, Se) on the optoelectronic properties and photocatalytic hydrogen evolution performance of CPPs. Two isostructural CPPs (P3,P4) that contain a one-atom substitution, O and Se, were designed and synthesized. Because of the variation of just a single atom, all the CPPs have similar pore structures, BET surface areas, and pore sizes. On the other hand, their optoelectronic properties are highly dependent on the choice of atom. However, their photocatalytic hydrogen evolution activities follow the trend ofP1>P3>P4. Compared toP1(S-containing),P3(O-containing) has a lower hydrogen evolution rate (HER) of 22 mu mol h(-1)under visible light illumination (lambda >= 420 nm) and an apparent quantum efficiency (AQE) of 1.43% at 420 +/- 20 nm, due to its stronger acceptor 2,1,3-benzoxadiazole, broader optical band gap and more negative LUMO energy level;P4has an even lower HER thanP3, due to replacement with the heavy atom Se, which leads to a decrease in ionization, an increase in bond length and a decrease in acceptor aromaticity, a correspondingly weaker intramolecular charge transfer process, and a high electron-hole recombination rate. Therefore, the one-atom substitution (O, S, Se) strategy shows great importance in the design of D-A type organic porous conjugated polymers for photocatalytic hydrogen evolution.
机译:缀合的多孔聚合物(CPP)是由于其大的比表面积和可调节的光带间隙为导致的出现光催化剂的新出现类。我们之前通过三嗪单元通过三嗪单位连接了一种新的CPP(P1),通过三嗪单元通过具有有前途的光催化氢进化行为的三嗪单元。这项工作的目的是探讨单原子取代(O,S,SE)对CPPS的光电性能和光催化氢进化性能的影响。设计并合成含有单原子替换,o和se的两种异层cpps(p3,p4)。由于只有单个原子的变化,所有CPP都具有类似的孔结构,BET表面积和孔径。另一方面,它们的光电性质高度依赖于原子的选择。然而,它们的光催化氢进化活动遵循P1> P3> P4的趋势。比较TOP1(含S),P3(O型)在可见光照明(Lambda> = 420nm)下具有较低的氢进化速率(22μmolH(-1),表观量子效率(AQE) 420 +/-20nm的1.43%,由于其受体2,1,3-苯唑二唑,更广泛的光学带隙和更负面的Lumo能量水平; P4HA是甚至降低了她的THANP3,由于重型原子SE,其导致电离的降低,粘合长度的增加和受体芳香性的降低,相应较弱的分子内电荷转移过程和高电子 - 空穴重组率。因此,单原子替代(O,S,SE)策略在D-A型有机多孔缀合物的设计中表达了用于光催化氢进化的D-A型有机多孔共轭聚合物的重要性。

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