Insight into the Role and Evidence of Oxygen Vacancies in Porous Single-Crystalline Oxide to Enhance Catalytic Activity and Durability

Author:

Ye Lingting123,Ma Jiaming123,Zhang Jie123,Yin Wen4,Xia Yuanguang4,Xie Kui123ORCID

Affiliation:

1. Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, China.

2. Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China, Fuzhou, Fujian 350108, China.

3. Advanced Energy Science and Technology Guangdong Laboratory, 29 Sanxin North Road, Huizhou, Guangdong 116023, China.

4. Spallation Neutron Source Science Center, Dongguan, Guangdong 523803, China.

Abstract

Introducing and stabilizing oxygen vacancies in oxide catalysts is considered to be a promising strategy for improving catalytic activity and durability. Herein, we quantitatively create oxygen vacancies in the lattice of porous single-crystalline β-Ga 2 O 3 monoliths by reduction treatments and stabilize them through the long-range ordering of crystal lattice to enhance catalytic activity and durability. The combination analysis of time-of-flight neutron powder diffraction and extended x-ray absorption fine structure discloses that the preferential generation of oxygen vacancy tends to occur at the site of tetrahedral coordination oxygen ions (O III sites), which contributes to the formation of unsaturated Ga–O coordination in the monoclinic phase. The oxygen vacancies are randomly distributed in lattice even though some of them are present in the form of domain defect in the PSC Ga 2 O 3 monoliths after the reduction treatment. The number of oxygen vacancies in the reduced monoliths gives 2.32 × 10 13 , 2.87 × 10 13 , and 3.45 × 10 13 mg −1 for the Ga 2 O 2.952 , Ga 2 O 2.895 , and Ga 2 O 2.880 , respectively. We therefore demonstrate the exceptionally high C 2 H 4 selectivity of ~100% at the C 2 H 6 conversion of ~37% for nonoxidative dehydrogenation of C 2 H 6 to C 2 H 4 . We further demonstrate the excellent durability even at 620 °C for 240 h of continuous operation.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference35 articles.

1. Stabilizing Oxygen Vacancies in ZrO2 by Ga2O3 Boosts the Direct Dehydrogenation of Light Alkanes

2. Surface oxygen vacancies on reduced Co3O4(100): Superoxide formation and ultra-low-temperature CO oxidation;Liu Y;Angew Chem Int Ed,2021

3. B-site nanoscale-ordered structure enables ultra-high tunable performance;Peng B;Research (Wash D C),2022

4. Wavelength-dependent solar N2 fixation into ammonia and nitrate in pure water;Ren W;Research (Wash D C),2020

5. Synergistic O2−/Li+ dual ion transportation at atomic scale;Meng F;Research (Wash D C),2019

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