Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei 230026, China.
Nat Commun. 2012;3:1057. doi: 10.1038/ncomms2066.
Inorganic graphene analogues (IGAs) are a conceptually new class of materials with attractive applications in next-generation flexible and transparent nanodevices. However, their species are only limited to layered compounds, and the difficulty in extension to non-layered compounds hampers their widespread applicability. Here we report the fabrication of large-area freestanding single layers of non-layered ZnSe with four-atomic thickness, using a strategy involving a lamellar hybrid intermediate. Their surface distortion, revealed by means of synchrotron radiation X-ray absorption fine structure spectroscopy, is shown to give rise to a unique electronic structure and an excellent structural stability, thus determining an enhanced solar water splitting efficiency and photostability. The ZnSe single layers exhibit a photocurrent density of 2.14 mA cm(-2) at 0.72 V versus Ag/AgCl under 300 W Xe lamp irradiation, 195 times higher than that of bulk counterpart. This work opens the door for extending atomically thick IGAs to non-layered compounds and holds promise for a wealth of innovative applications.
无机石墨烯类似物 (IGAs) 是一类具有吸引力的新型材料,有望应用于下一代柔性透明纳米器件。然而,它们的种类仅限于层状化合物,而将其扩展到非层状化合物的困难阻碍了它们的广泛适用性。在这里,我们报告了使用涉及层状杂化中间体的策略,制造出大面积的独立单层具有四个原子厚度的非层状 ZnSe。通过同步辐射 X 射线吸收精细结构光谱揭示了它们的表面变形,这导致了独特的电子结构和优异的结构稳定性,从而决定了增强的太阳能水分解效率和光稳定性。ZnSe 单层在 300 W Xe 灯照射下,在 0.72 V 对 Ag/AgCl 的光电流密度为 2.14 mA cm(-2),比体相对应物高 195 倍。这项工作为将原子厚度的 IGAs 扩展到非层状化合物开辟了道路,并为丰富的创新应用提供了前景。
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