Literature DB >> 26098365

First Evidence of Rh Nano-Hydride Formation at Low Pressure.

Claudia Zlotea1, Yassine Oumellal1, Mariem Msakni1, Julie Bourgon1, Stéphane Bastide1, Christine Cachet-Vivier1, Michel Latroche1.   

Abstract

Rh-based nanoparticles supported on a porous carbon host were prepared with tunable average sizes ranging from 1.3 to 3.0 nm. Depending on the vacuum or hydrogen environment during thermal treatment, either Rh metal or hydride is formed at nanoscale, respectively. In contrast to bulk Rh that can form a hydride phase under 4 GPa pressure, the metallic Rh nanoparticles (∼2.3 nm) absorb hydrogen and form a hydride phase at pressure below 0.1 MPa, as evidenced by the presence of a plateau pressure in the pressure-composition isotherm curves at room temperature. Larger metal nanoparticles (∼3.0 nm) form only a solid solution with hydrogen under similar conditions. This suggests a nanoscale effect that drastically changes the Rh-H thermodynamics. The nanosized Rh hydride phase is stable at room temperature and only desorbs hydrogen above 175 °C. Within the present hydride particle size range (1.3-2.3 nm), the hydrogen desorption is size-dependent, as proven by different thermal analysis techniques.

Entities:  

Keywords:  Rh; hydride phase; hydrogen sorption; nanoparticles

Year:  2015        PMID: 26098365     DOI: 10.1021/acs.nanolett.5b01766

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  2 in total

1.  How 10 at% Al Addition in the Ti-V-Zr-Nb High-Entropy Alloy Changes Hydrogen Sorption Properties.

Authors:  Jorge Montero; Gustav Ek; Laetitia Laversenne; Vivian Nassif; Martin Sahlberg; Claudia Zlotea
Journal:  Molecules       Date:  2021-04-23       Impact factor: 4.411

2.  Hydrogen absorption and desorption on Rh nanoparticles revealed by in situ dispersive X-ray absorption fine structure spectroscopy.

Authors:  Chulho Song; Okkyun Seo; Daiju Matsumura; Satoshi Hiroi; Yi-Tao Cui; Jaemyung Kim; Yanna Chen; Akhil Tayal; Kohei Kusada; Hirokazu Kobayashi; Hiroshi Kitagawa; Osami Sakata
Journal:  RSC Adv       Date:  2020-05-26       Impact factor: 4.036

  2 in total

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