4.8 Article

SrTiO3 catalysts prepared from topochemical conversion of Bi4Ti3O12 nanoplatelets: Surface characterizations and interactions with isopropanol

期刊

JOURNAL OF CATALYSIS
卷 416, 期 -, 页码 222-232

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcat.2022.11.001

关键词

Perovskites; Topochemical conversion; Surface chemistry; Isopropanol; Oxygen vacancy

资金

  1. National Science and Technology Council (NSTC) in Taiwan [109-2221-E-002-103-MY3, 110-2923-E-002-005-MY2, 110-2221-E-002-012-MY3, 108- 2923-E-002-006-MY3]
  2. Ministry of Education (MOE) in Taiwan [109M4074]
  3. Advanced Research Center for Green Materials Science and Technology from The Featured Area Research Center Program within Ministry of Education [111L9006]
  4. NSTC in Taiwan [NSTC 111-2634-F-002-016-]
  5. Ministry for Education, Science and Sport from Slovenia [C3330-19-252011]
  6. Slovenian Research Agency [P2-0091, J1-3025]

向作者/读者索取更多资源

Heterostructural Bi4Ti3O12-SrTiO3 (BIT-STO) platelets were synthesized via topochemical conversion, and the increase in STO content was found to improve the dehydrogenation activity and selectivity of IPA.
The heterostructural Bi4Ti3O12-SrTiO3 (or BIT-STO) platelets with various STO contents (i.e., 40, 65, and 100%) were synthesized by the topochemical conversion of well-defined BIT platelets via the alkaline hydrothermal treatment. The surface properties of synthesized BIT-STO platelets were characterized, and probed by the temperature-programmed surface reaction of isopropanol (IPA). It is found that all BIT-STO catalysts are highly selective in IPA dehydrogenation (to yield acetone) as opposed to IPA dehy-dration (to yield propene). With the increase in STO content, the desorption temperature of acetone from the BIT-STO surface gradually decreases, suggestive of an improved IPA dehydrogenation activity. The BIT-derived STO exhibits much higher activity and selectivity in IPA dehydrogenation in comparison to the hydrothermally-synthesized STO and commercial STO, which is attributed to the desirable (100) facet with abundant surface defects formed during the topochemical conversion. In-situ infrared spec-troscopy indicates that upon IPA adsorption, the BIT-derived STO shows a higher proportion of bridged isopropoxide (IPO) presents on the surface than the reference STO samples. It is proposed that the abun-dant oxygen vacancies present on the surface of BIT-derived STO could facilitate the bridged adsorption of IPO intermediate that favors further decomposition into acetone, thus promoting the selective IPA dehydrogenation.(c) 2022 Elsevier Inc. All rights reserved.

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