Su Yang, Prestat Eric, Hu Chengyi, Puthiyapura Vinod Kumar, Neek-Amal Mehdi, Xiao Hui, Huang Kun, Kravets Vasyl G, Haigh Sarah J, Hardacre Christopher, Peeters Francois M, Nair Rahul R
Department of Physics , University of Antwerpen , Groenenborgerlaan 171 , B-2020 Antwerpen , Belgium.
Department of Physics , Shahid Rajaee Teacher Training University , Tehran , Iran.
Nano Lett. 2019 Jul 10;19(7):4678-4683. doi: 10.1021/acs.nanolett.9b01733. Epub 2019 Jun 13.
The ability of different materials to display self-limiting growth has recently attracted an enormous amount of attention because of the importance of nanoscale materials in applications for catalysis, energy conversion, (opto)electronics, and so forth. Here, we show that the electrochemical deposition of palladium (Pd) between graphene oxide (GO) sheets result in the self-limiting growth of 5-nm-thick Pd nanosheets. The self-limiting growth is found to be a consequence of the strong interaction of Pd with the confining GO sheets, which results in the bulk growth of Pd being energetically unfavorable for larger thicknesses. Furthermore, we have successfully carried out liquid exfoliation of the resulting Pd-GO laminates to isolate Pd nanosheets and have demonstrated their high efficiency in continuous flow catalysis and electrocatalysis.
由于纳米级材料在催化、能量转换、(光)电子等应用中的重要性,不同材料展现出自限生长的能力最近引起了极大关注。在此,我们表明在氧化石墨烯(GO)片层之间进行钯(Pd)的电化学沉积会导致5纳米厚的Pd纳米片自限生长。发现这种自限生长是Pd与受限的GO片层之间强相互作用的结果,这使得Pd的体相生长对于更大厚度在能量上是不利的。此外,我们已成功对所得的Pd-GO层压板进行液体剥离以分离出Pd纳米片,并证明了它们在连续流催化和电催化中的高效率。