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Facile Synthesis of Rhodium-Based Nanocrystals in a Metastable Phase and Evaluation of Their Thermal and Catalytic Properties.

Publication ,  Journal Article
Nguyen, QN; Li, KK; Ding, Y; Janssen, A; Huang, Z; Chi, M; Xia, Y
Published in: Small methods
March 2025

Controlling the polymorphism of metal nanocrystals is a promising strategy for enhancing properties and discovering new phenomena. However, previous studies on Rh nanocrystals have focused on their thermodynamically stable face-centered-cubic (fcc) phase. Herein, a facile synthesis of Rh-based nanocrystals featuring the metastable hexagonal close-packed (hcp) phase is reported by using Ru seeds in their native hcp phase to template the deposition of Rh atoms. The success of such phase-controlled synthesis relies on the templating effect promoted by the small lattice mismatch between Ru and Rh and the slow dropwise titration of the precursor at an elevated temperature, ensuring the layer-by-layer growth mode and thus the formation of a conformal hcp-Rh shell. Faster injection rate of Rh(III) precursor leads to the formation of a rough Rh shell in the conventional fcc phase due to accelerated reaction kinetics. Considering both thermodynamic and kinetic aspects of this system, the hcp-Rh phase is favored when the low surface energy from smooth overlayers balances the high bulk energy of the metastable phase, achieved through tight control of reaction rates and deposition patterns. These Ruhcp@Rhhcp core-shell nanocrystals demonstrate thermal stability up to 400 °C, while exhibiting higher catalytic activity toward ethanol oxidation reaction compared to Ruhcp@Rhfcc counterparts.

Duke Scholars

Published In

Small methods

DOI

EISSN

2366-9608

ISSN

2366-9608

Publication Date

March 2025

Volume

9

Issue

3

Start / End Page

e2401143
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Nguyen, Q. N., Li, K. K., Ding, Y., Janssen, A., Huang, Z., Chi, M., & Xia, Y. (2025). Facile Synthesis of Rhodium-Based Nanocrystals in a Metastable Phase and Evaluation of Their Thermal and Catalytic Properties. Small Methods, 9(3), e2401143. https://doi.org/10.1002/smtd.202401143
Nguyen, Quynh N., Kei Kwan Li, Yong Ding, Annemieke Janssen, Zhennan Huang, Miaofang Chi, and Younan Xia. “Facile Synthesis of Rhodium-Based Nanocrystals in a Metastable Phase and Evaluation of Their Thermal and Catalytic Properties.Small Methods 9, no. 3 (March 2025): e2401143. https://doi.org/10.1002/smtd.202401143.
Nguyen QN, Li KK, Ding Y, Janssen A, Huang Z, Chi M, et al. Facile Synthesis of Rhodium-Based Nanocrystals in a Metastable Phase and Evaluation of Their Thermal and Catalytic Properties. Small methods. 2025 Mar;9(3):e2401143.
Nguyen, Quynh N., et al. “Facile Synthesis of Rhodium-Based Nanocrystals in a Metastable Phase and Evaluation of Their Thermal and Catalytic Properties.Small Methods, vol. 9, no. 3, Mar. 2025, p. e2401143. Epmc, doi:10.1002/smtd.202401143.
Nguyen QN, Li KK, Ding Y, Janssen A, Huang Z, Chi M, Xia Y. Facile Synthesis of Rhodium-Based Nanocrystals in a Metastable Phase and Evaluation of Their Thermal and Catalytic Properties. Small methods. 2025 Mar;9(3):e2401143.

Published In

Small methods

DOI

EISSN

2366-9608

ISSN

2366-9608

Publication Date

March 2025

Volume

9

Issue

3

Start / End Page

e2401143