Wang Cong, Mouchet Sébastien R, Deparis Olivier, Li Jingwei, Paineau Erwan, Dragoe Diana, Remita Hynd, Ghazzal Mohamed Nawfal
Université Paris-Saclay, UMR 8000 CNRS, Institut de Chimie Physique, Orsay, 91405, France.
Department of Physics, and Namur Institute of Structured Matter (NISM), University of Namur, Rue de Bruxelles 61, Namur, 5000, Belgium.
Small. 2024 Oct;20(42):e2402211. doi: 10.1002/smll.202402211. Epub 2024 Jun 19.
Cellulose nanocrystals (CNCs) have inspired the synthesis of various advanced nanomaterials, opening opportunities for different applications. However, a simple and robust approach for transferring the long-range chiral nematic nanostructures into TiO photocatalyst is still fancy. Herein, a successful fabrication of freestanding TiO films maintaining their macroscopic chiral nematic structures after removing the CNCs biotemplate is reported. It is demonstrated that including copper acetate in the sol avoids the epitaxial growth of the lamellar-like structure of TiO and stabilizes the chiral nematic structure instead. The experimental results and optical simulation demonstrate an enhancement at the blue and red edges of the Fabry-Pérot reflectance peak located in the visible range. This enhancement arises from the light scattering effect induced by the formation of the chiral nematic structure. The nanostructured films showed 5.3 times higher performance in the photocatalytic hydrogen generation, compared to lamellar TiO, and benefited from the presence of copper species for charge carriers' separation. This work is therefore anticipated to provide a simple approach for the design of chiral nematic photocatalysts and also offers insights into the electron transfer mechanisms on TiO/CuO with variable oxidation states for photocatalytic hydrogen generation.
纤维素纳米晶体(CNCs)激发了各种先进纳米材料的合成,为不同应用带来了机遇。然而,将长程手性向列型纳米结构转移到TiO光催化剂中的简单而稳健的方法仍然是个幻想。在此,报道了一种成功制备的独立TiO薄膜,在去除CNC生物模板后仍保持其宏观手性向列型结构。结果表明,在溶胶中加入醋酸铜可避免TiO层状结构的外延生长,转而稳定手性向列型结构。实验结果和光学模拟表明,位于可见光范围内的法布里-珀罗反射峰的蓝色和红色边缘处有增强。这种增强源于手性向列型结构形成所引起的光散射效应。与层状TiO相比,纳米结构薄膜在光催化产氢方面的性能高出5.3倍,并且受益于铜物种对电荷载流子的分离作用。因此,这项工作有望为手性向列型光催化剂的设计提供一种简单方法,也为具有可变氧化态的TiO/CuO用于光催化产氢的电子转移机制提供见解。