Literature DB >> 30542684

Luminescent Nd2S3 thin films: a new chemical vapour deposition route towards rare-earth sulphides.

Stefan Cwik1, Sebastian M J Beer, Marcel Schmidt, Nils C Gerhardt, Teresa de Los Arcos, Detlef Rogalla, Jana Weßing, Ignacio Giner, Martin Hofmann, Guido Grundmeier, Andreas D Wieck, Anjana Devi.   

Abstract

Neodymium sulphide (Nd2S3) belongs to the exciting class of rare earth sulphides (RES) and is projected to have a serious potential in a wide spectrum of application either in pure form or as dopant. We demonstrate a facile and first growth of Nd2S3 thin films via metal-organic chemical vapour deposition (MOCVD) at moderate process conditions using two new Nd precursors, namely tris(N,N'-diisopropyl-2-dimethylamido-guanidinato)Nd(iii) and tris(N,N'-diisopropyl-acetamidinato)Nd(iii). The promising thermal properties and suitable reactivity of both Nd precursors towards elemental sulphur enabled the formation of high purity γ-Nd2S3. While the process temperature for film growth ranged from 400 °C to 600 °C, the films were crystalline above 500 °C. We also demonstrate that the as-deposited γ-Nd2S3 are luminescent, with the optical bandgap ranging from 2.3 eV to 2.5 eV. The process circumvents post-deposition treatments such as sulfurisation to fabricate the desired Nd2S3, which paves the way for large scale synthesis and also opens up new avenues for exploring the potential of this class of materials with properties for functional applications.

Entities:  

Year:  2019        PMID: 30542684     DOI: 10.1039/c8dt04317e

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  1 in total

1.  Rational Development of Guanidinate and Amidinate Based Cerium and Ytterbium Complexes as Atomic Layer Deposition Precursors: Synthesis, Modeling, and Application.

Authors:  Parmish Kaur; Lukas Mai; Arbresha Muriqi; David Zanders; Ramin Ghiyasi; Muhammad Safdar; Nils Boysen; Manuela Winter; Michael Nolan; Maarit Karppinen; Anjana Devi
Journal:  Chemistry       Date:  2021-01-20       Impact factor: 5.236

  1 in total

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