Kesavan Ganesh, Sorescu Dan C, Ahamed Raihan, Damodaran Krishnan, Crawford Scott E, Askari Faezeh, Star Alexander
Department of Chemistry, University of Pittsburgh Pittsburgh Pennsylvania 15260 USA
United States Department of Energy, National Energy Technology Laboratory Pittsburgh Pennsylvania 15236 USA.
RSC Adv. 2024 Jul 24;14(32):23342-23351. doi: 10.1039/d4ra03437f. eCollection 2024 Jul 19.
Polymeric graphitic carbon nitride (gCN) materials have received great attention in the fields of photo and electrocatalysis due to their distinct properties in metal-free systems with high physicochemical stability. Nevertheless, the activity of undoped gCN is limited due to its relatively low specific surface area, low conductivity, and poor dispersibility. Doping Gd atoms in a gCN matrix is an efficient strategy to fine-tune its catalytic activity and its electronic structure. Herein, the influence of various wt% of gadolinium (Gd) doped in melon-type carbon nitride was systematically investigated. Gadolinium-doped graphitic carbon nitride (GdgCN) was synthesized by adding gadolinium nitrate to dicyandiamide during polymerization. The X-ray diffraction (XRD) and transmission electron microscopy (TEM) results revealed that the crystallinity and the morphological properties are influenced by the % of Gd doping. Furthermore, X-ray photoelectron spectroscopy (XPS) studies revealed that the gadolinium ions bonded with nitrogen atoms. Complementary density functional theory (DFT) calculations illustrate possible bonding configurations of Gd ions both in bulk material and on ultrathin melon layers and provide evidence for the corresponding bandgap modifications induced by gadolinium doping.
聚合物石墨相氮化碳(gCN)材料因其在无金属体系中具有独特性能且物理化学稳定性高,在光催化和电催化领域受到了广泛关注。然而,未掺杂的gCN活性有限,这是由于其相对较低的比表面积、低电导率和较差的分散性。在gCN基体中掺杂钆(Gd)原子是微调其催化活性和电子结构的有效策略。在此,系统研究了不同重量百分比的钆(Gd)掺杂在瓜型氮化碳中的影响。通过在聚合过程中将硝酸钆添加到双氰胺中来合成钆掺杂的石墨相氮化碳(GdgCN)。X射线衍射(XRD)和透射电子显微镜(TEM)结果表明,结晶度和形态性能受Gd掺杂百分比的影响。此外,X射线光电子能谱(XPS)研究表明钆离子与氮原子键合。互补密度泛函理论(DFT)计算阐明了Gd离子在块状材料和超薄瓜层中的可能键合构型,并为钆掺杂引起的相应带隙变化提供了证据。