Ligand-free one-pot synthesis of Ru/W18O49 self-assembled hierarchical coral-like nanostructures for selective conversion of glucose into glycols
Title | Ligand-free one-pot synthesis of Ru/W18O49 self-assembled hierarchical coral-like nanostructures for selective conversion of glucose into glycols |
Publication Type | Journal Article |
Year of Publication | 2023 |
Authors | Patil, MKrishnat, Gaikwad, SHanmant, Kirali, AArunima Ba, Marimuthu, B, Mukherjee, SPorel |
Journal | ACS Applied Nano Materials |
Volume | 6 |
Issue | 24 |
Pagination | 22635-22642 |
Date Published | DEC |
Type of Article | Journal Article |
Keywords | glycols, Nanostructure, One-pot synthesis, ruthenium (Ru), selective conversion of glucose, tungsten oxide (W18O49) |
Abstract | In this study, we report a simple inorganic route for the synthesis of Ru/W18O49 self-assembled coral-like nanostructures, with the following advantages: It is one step and requires no surfactant or stabilizing agent; Ru loading is easily tuned, and the as-synthesized nanomaterials can be used as a catalyst without any further processing. The preliminary investigations of the catalytic performance of these as-synthesized Ru/W18O49 nanomaterials appear quite promising for converting glucose to glycols. The total glycol selectivity of 82.6% with 100% conversion of glucose was obtained over 0.03 wt % Ru loading on tungsten nanostructures, which turns out to be the lowest Ru loading% on support reported to date to achieve the highest total glycol selectivity among the previously reported catalyst based on Ru-nano/composite materials. Additionally, preliminary results show that the concentration of Ru on W18O49 significantly affects the selectivity of the glycol production. Thus, our methodology will open up a wide range of opportunities regarding the choice of metals, stoichiometric/nonstoichiometric WOx (x=1-3) as support, and the viability of further catalytic manipulations. A probable catalytic mechanism for this catalytic process is also proposed. |
DOI | 10.1021/acsanm.3c04200 |
Type of Journal (Indian or Foreign) | Foreign |
Impact Factor (IF) | 5.9 |
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