Jiang Denghui, Wang Jie, Gao Ruijie, Fu Liangjie, Yang Huaming
Hunan Key Lab of Mineral Materials and Application, School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China.
Hunan International Joint Lab of Mineral Materials, Central South University, Changsha 410083, China.
ACS Appl Mater Interfaces. 2021 Dec 15;13(49):59431-59439. doi: 10.1021/acsami.1c15029. Epub 2021 Dec 2.
The two-dimensional (2D) materials with asymmetric sub-layers have recently attracted tremendous interest in many fields, and investigating the structure-performance relationship of different sub-layers is critical but challenging. Herein, we report that natural kaolinite (Kaol) nanosheets with an asymmetric layer structure possess a contrasting photocatalytic activity on its Al-O and Si-O sub-layers. The experimental and theoretical results reveal that the ion isovalent structure of Fe and Al not only results in a high iron doping concentration in the Al-O sub-layer but also causes superb intrinsic photochemical activity of the Al-O sub-layer compared with the Si-O sub-layer. Thus, the Al-O sub-layers of Kaol NSs have more excellent photogenerated charge generation and separation efficiency than Si-O sub-layers, resulting in about 1-2 orders of magnitude higher photocatalytic performance. This study not only unravels the structure-performance relationship of different sub-layers of 2D nanoclay but also sheds new light on the design of 2D materials with the asymmetric sub-layer.
具有不对称子层的二维(2D)材料近年来在许多领域引起了极大关注,研究不同子层的结构-性能关系至关重要但具有挑战性。在此,我们报道具有不对称层状结构的天然高岭土(Kaol)纳米片在其Al-O和Si-O子层上具有截然不同的光催化活性。实验和理论结果表明,Fe和Al的离子等价结构不仅导致Al-O子层中铁掺杂浓度高,而且与Si-O子层相比,还使Al-O子层具有出色的本征光化学活性。因此,高岭土纳米片的Al-O子层比Si-O子层具有更优异的光生电荷产生和分离效率,导致光催化性能高出约1-2个数量级。本研究不仅揭示了二维纳米粘土不同子层的结构-性能关系,还为具有不对称子层的二维材料设计提供了新的思路。