Qin Jiani, Barrio Jesús, Peng Guiming, Tzadikov Jonathan, Abisdris Liel, Volokh Michael, Shalom Menny
Department of Chemistry and Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.
Nat Commun. 2020 Sep 17;11(1):4701. doi: 10.1038/s41467-020-18535-0.
A general synthesis of carbon nitride (CN) films with extended optical absorption, excellent charge separation under illumination, and outstanding performance as a photoanode in water-splitting photoelectrochemical cells is reported. To this end, we introduced a universal method to rapidly grow CN monomers directly from a hot saturated solution on various substrates. Upon calcination, a highly uniform carbon nitride layer with tuned structural and photophysical properties and in intimate contact with the substrate is obtained. Detailed photoelectrochemical and structural studies reveal good photoresponse up to 600 nm, excellent hole extraction efficiency (up to 62%) and strong adhesion of the CN layer to the substrate. The best CN photoanode demonstrates a benchmark-setting photocurrent density of 353 µA cm (51% faradaic efficiency for oxygen), and external quantum yield value above 12% at 450 nm at 1.23 V versus RHE in an alkaline solution, as well as low onset potential and good stability.
报道了一种具有扩展光吸收、光照下优异电荷分离以及在水分解光电化学电池中作为光阳极具有出色性能的氮化碳(CN)薄膜的通用合成方法。为此,我们引入了一种通用方法,可在各种基板上直接从热饱和溶液中快速生长CN单体。煅烧后,可获得具有可调结构和光物理性质且与基板紧密接触的高度均匀的氮化碳层。详细的光电化学和结构研究表明,在高达600 nm的波长下具有良好的光响应、出色的空穴提取效率(高达62%)以及CN层与基板的强附着力。最佳的CN光阳极在碱性溶液中相对于可逆氢电极(RHE)在1.23 V时,在450 nm处表现出353 μA cm的基准设定光电流密度(氧气的法拉第效率为51%)、高于12%的外量子产率值,以及低起始电位和良好的稳定性。