REFERENCES
2. Ciriminna, R.; Falletta, E.; Della Pina, C.; Teles, J. H.; Pagliaro, M. Industrial applications of gold catalysis. Angew. Chem. Int. Ed. Engl. 2016, 55, 14210-7.
3. Wang, C.; Yang, M.; Flytzani-Stephanopoulos, M. Single gold atoms stabilized on nanoscale metal oxide supports are catalytic active centers for various reactions. AIChE. J. 2016, 62, 429-39.
5. Chen, Y.; Xu, M.; Wen, J.; et al. Selective recovery of precious metals through photocatalysis. Nat. Sustain. 2021, 4, 618-26.
6. Zupanc, A.; Install, J.; Jereb, M.; Repo, T. Sustainable and selective modern methods of noble metal recycling. Angew. Chem. Int. Ed. Engl. 2023, 62, e202214453.
7. Liang, C. J.; Li, J. Y. Recovery of gold in iodine-iodide system - a review. Sep. Sci. Technol. 2019, 54, 1055-66.
8. Billy, E.; Dourdain, S.; Legeai, S.; et al. Process for the selective recovery of gold by means of green chemistry from an element containing gold and a platinoid. 2023. https://patents.google.com/patent/FR3126892A1/en?oq=FR3126892. (accessed 2025-04-02)
9. Jalbout, A. F.; Elentriecy, H. Recovery of gold and silver from precious metals-containing solids. 2017. https://patents.google.com/patent/US20190368060A1/en. (accessed 2025-04-02).
10. Goguet, A.; Hardacre, C.; Harvey, I.; Narasimharao, K.; Saih, Y.; Sa, J. Increased dispersion of supported gold during methanol carbonylation conditions. J. Am. Chem. Soc. 2009, 131, 6973-5.
11. Cao, Y.; Yang, J. G.; Deng, Y.; et al. Amine-responsive disassembly of AuI-CuI double salts for oxidative carbonylation. Angew. Chem. Int. Ed. Engl. 2020, 59, 2080-4.
12. Cao, Y.; Huang, Y.; He, L. Sustainable route toward N-Boc amines: AuCl3/CuI-catalyzed N-tert-butyloxycarbonylation of amines at room temperature. ChemSusChem 2022, 15, e202102400.
13. Cao, Y.; Peng, Y.; Cheng, D.; et al. Room-temperature CO oxidative coupling for oxamide production over interfacial Au/ZnO catalysts. ACS. Catal. 2023, 13, 735-43.
14. Mancuso, R.; Della Ca’, N.; Veltri, L.; Ziccarelli, I.; Gabriele, B. PdI2-based catalysis for carbonylation reactions: a personal account. Catalysts 2019, 9, 610.
15. Gabriele, B.; Salerno, G.; Mancuso, R.; Costa, M. Efficient synthesis of ureas by direct palladium-catalyzed oxidative carbonylation of amines. J. Org. Chem. 2004, 69, 4741-50.
16. Wu, X. F.; Neumann, H.; Beller, M. Palladium-catalyzed oxidative carbonylation reactions. ChemSusChem 2013, 6, 229-41.





