Academic Thesis

Basic information

Name Sato Yasushi
Belonging department
Occupation name
researchmap researcher code 6000010708
researchmap agency Okayama University of Science

Title

High-Purity Synthesis of Perovskite Oxynitride LaHfO2N Prepared via a Reduced-Ammonolysis Treatment Using an Active Metal and Amorphous Oxide-Based Precursor

Bibliography Type

Joint Author

Author

Kazuya Sakinaga ,  Makoto Fukuta ,  Yasushi Sato ,  Masato Kakihana ,  Yoshihiro Kusano ,  Shunya Yoshino ,  Hideki Kato ,  Yuji Masubuchi

Summary

We present a novel synthesis method for single-phase LaHfO2N via the ammonolysis of amorphous oxide-based precursors in the presence of active metal powders such as Mg and MgH2. Hf-containing oxynitrides and nitrides are difficult to synthesize by conventional ammonolysis because oxygen removal from the thermodynamically stable Hf–O framework and subsequent nitridation require strongly reducing conditions. The present active-metal-assisted ammonolysis process provides an effective synthetic strategy for such Hf-containing compounds, as demonstrated by the successful formation of phase-pure LaHfO2N. The addition of Mg or MgH2 significantly enhanced the nitridation process; increasing the Mg or MgH2 content led to a higher proportion of the perovskite LaHfO2N phase and a corresponding decrease in the residual oxide-based precursor phase, La2Hf2O7. In contrast, excessive addition of active metals induced over-reduction, resulting in colored impurity phases and enhanced optical absorption in the visible and near-infrared regions. Therefore, careful control of the active-metal content was essential for obtaining high-purity LaHfO2N powders. Optimal phase purity was achieved at precursor-to-Mg or MgH2 mixing ratios of approximately 1.0:2.0. The optical absorption of the resulting LaHfO2N powders decreased when oxide-based precursors preheated at lower temperatures were used, indicating that amorphous oxide-based precursors are effective for suppressing undesired coloration. After treatment with a dilute HNO3 solution, the perovskite phase remained intact, with no detectable impurities such as HfNx and no significant Mg substitution at the Hf sites. The photocatalytic activity of the LaHfO2N samples was evaluated under ultraviolet irradiation. The powders exhibited water-splitting capability, predominantly producing oxygen with only trace amounts of hydrogen.

Magazine(name)

Chemistry of Materials

Publisher

ACS Publication

Volume

38

Number Of Pages

16

StartingPage

8519

EndingPage

8529

Date of Issue

2026/08

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

Research papers (academic journals)

ISSN

DOI

10.1021/acs.chemmater.6c

NAID

PMID

URL

J-GLOBAL ID

arXiv ID

ORCID Put Code

DBLP ID