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通过单晶设计实现氮化碳宏观结构的协同掺杂与表面修饰

Synergistic Doping and Surface Decoration of Carbon Nitride Macrostructures by Single Crystal Design.

作者信息

Barrio Jesús, Barzilai Shmuel, Karjule Neeta, Amo-Ochoa Pilar, Zamora Félix, Shalom Menny

机构信息

Department of Chemistry and Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva 8410501, Israel.

Department of Materials, Royal School of Mines, Imperial College LondonRINGGOLD, London SW2AZ, England.

出版信息

ACS Appl Energy Mater. 2021 Feb 22;4(2):1868-1875. doi: 10.1021/acsaem.0c02964. Epub 2021 Jan 19.

Abstract

Tailored design of hybrid carbon nitride (CN) materials is quite challenging because of the drawbacks of the solid-state reaction, and the utilization of single crystals containing C-N monomers as reactants for the high-temperature reaction has been proven to imprint a given chemical composition, morphology, or electronic structure. We report the one-pot synthesis of alkali-containing CN macrostructures with ionic crystals on its surface by utilizing a tailored melamine-hydrochloride-based molecular single crystal containing NaCl and KCl as reactants. Structural and optical investigations reveal that upon calcination, molecular doping with Na and K is achieved, and additionally, the ionic species remain on the surface of the materials, resulting in an enhanced H evolution performance through water splitting owing to a high ionic strength of the reaction media. Additionally, the most stable configuration of the alkaline metals in the CN lattice is evaluated by DFT calculations. This work provides an approach for the rational design of CN and other related metal-free materials with controllable properties for energy-related applications and devices.

摘要

由于固态反应的缺点,杂化氮化碳(CN)材料的定制设计颇具挑战性,并且已证明利用含C-N单体的单晶作为高温反应的反应物能够赋予特定的化学成分、形态或电子结构。我们报道了一种通过使用含有NaCl和KCl的定制三聚氰胺-盐酸盐基分子单晶作为反应物,一锅合成表面带有离子晶体的含碱CN宏观结构的方法。结构和光学研究表明,煅烧时实现了Na和K的分子掺杂,此外,离子物种保留在材料表面,由于反应介质的高离子强度,通过水分解产生氢气的性能得到增强。此外,通过密度泛函理论(DFT)计算评估了碱性金属在CN晶格中最稳定的构型。这项工作为合理设计具有可控性能的CN及其他相关无金属材料用于能源相关应用和器件提供了一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd64/7903700/f7c32b0f4396/ae0c02964_0002.jpg

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