1. Kumar Katiyar, N., Biswas, K., Yeh, J.-W., Sharma, S. & Sekhar Tiwary, C. A perspective on the catalysis using the high entropy alloys. Nano Energy88, 106261 (2021).
2. Xin, Y. et al. High-Entropy Alloys as a Platform for Catalysis: Progress, Challenges, and Opportunities. ACS Catal.10, 11280–11306 (2020).
3. Wang, X. et al. Continuous Synthesis of Hollow High-Entropy Nanoparticles for Energy and Catalysis Applications. Adv. Mater.32, 1–8 (2020).
4. Wang, B. et al. General synthesis of high-entropy alloy and ceramic nanoparticles in nanoseconds. Nat. Synth.1, (2022).
5. Yang, C. et al. Overcoming immiscibility toward bimetallic catalyst library. Sci. Adv.6, 1–9 (2020).
参考文献1. Xin, Y. et al. High-Entropy Alloys as a Platform for Catalysis: Progress, Challenges, and Opportunities. ACS Catal.10, 11280–11306 (2020).2. Sun, Y. & Dai, S. High-entropy materials for catalysis: A new frontier. Sci. Adv.7, 1–23 (2021).3. Lu, S. et al. One-pot synthesis of PtRu nanodendrites as efficient catalysts for methanol oxidation reaction. Nanoscale9, 1033–1039 (2017).4. Alayoglu, S. & Eichhorn, B. Rh-Pt bimetallic catalysts: Synthesis, characterization, and catalysis of core-shell, alloy, and monometallic nanoparticles. J. Am. Chem. Soc.130, 17479–17486 (2008).5. Zhang, X. et al. Platinum–copper single atom alloy catalysts with high performance towards glycerol hydrogenolysis. Nat. Commun.10, 1–12 (2019).6. Reier, T., Oezaslan, M. & Strasser, P. Electrocatalytic oxygen evolution reaction (OER) on Ru, Ir, and pt catalysts: A comparative study of nanoparticles and bulk materials. ACS Catal.2, 1765–1772 (2012).7. Yang, Y. et al. Tuning Electronic Structures of Nonprecious Ternary Alloys Encapsulated in Graphene Layers for Optimizing Overall Water Splitting Activity. ACS Catal.7, 469–479 (2017).8. Yao, Y. et al. Carbothermal shock synthesis of high-entropy-alloy nanoparticles. Science (80-. ).359, 1489–1494 (2018).9. Yao, Y. et al. High-throughput, combinatorial synthesis of multimetallic nanoclusters. Proc. Natl. Acad. Sci. U. S. A.117, 6316–6322 (2020).10. Glasscott, M. W. & Dick, J. E. Fine-Tuning Porosity and Time-Resolved Observation of the Nucleation and Growth of Single Platinum Nanoparticles. ACS Nano13, 4572–4581 (2019).11. Gao, S. et al. Synthesis of high-entropy alloy nanoparticles on supports by the fast moving bed pyrolysis. Nat. Commun.11, (2020).12. Wu, D. et al. Platinum-Group-Metal High-Entropy-Alloy Nanoparticles. J. Am. Chem. Soc.142, 13833–13838 (2020).13. Wang, B. et al. General synthesis of high-entropy alloy and ceramic nanoparticles in nanoseconds. Nat. Synth.1, 138–146 (2022).14. Kumar Katiyar, N., Biswas, K., Yeh, J.-W., Sharma, S. & Sekhar Tiwary, C. A perspective on the catalysis using the high entropy alloys. Nano Energy88, 106261 (2021).