Literature DB >> 25602167

Zn₃P₂-Zn₃As₂ solid solution nanowires.

Hyung Soon Im1, Kidong Park, Dong Myung Jang, Chan Su Jung, Jeunghee Park, Seung Jo Yoo, Jin-Gyu Kim.   

Abstract

Semiconductor alloy nanowires (NWs) have recently attracted considerable attention for applications in optoelectronic nanodevices because of many notable properties, including band gap tunability. Zinc phosphide (Zn3P2) and zinc arsenide (Zn3As2) belong to a unique pseudocubic tetragonal system, but their solid solution has rarely been studied. Here In this study, we synthesized composition-tuned Zn3(P1-xAsx)2 NWs with different crystal structures by controlling the growth conditions during chemical vapor deposition. A first type of synthesized NWs were single-crystalline and grew uniformly along the [110] direction (in a cubic unit cell) over the entire compositional range (0 ≤ x ≤ 1) explored. The use of an indium source enabled the growth of a second type of NWs, with remarkable cubic-hexagonal polytypic twinned superlattice and bicrystalline structures. The growth direction of the Zn3P2 and Zn3As2 NWs was also switched to [111] and [112], respectively. These structural changes are attributable to the Zn-depleted indium catalytic nanoparticles which favor the growth of hexagonal phases. The formation of a solid solution at all compositions allowed the continuous tuning of the band gap (1.0-1.5 eV). Photocurrent measurements were performed on individual NWs by fabricating photodetector devices; the single-crystalline NWs with [110] growth direction exhibit a higher photoconversion efficiency compared to the twinned crystalline NWs with [111] or [112] growth direction.

Entities:  

Keywords:  band gap; composition tuning; photocurrents; ternary alloy; zinc arsenide; zinc phosphide

Year:  2015        PMID: 25602167     DOI: 10.1021/nl5037897

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


  2 in total

Review 1.  Nanoscale Growth Initiation as a Pathway to Improve the Earth-Abundant Absorber Zinc Phosphide.

Authors:  Simon Escobar Steinvall; Elias Z Stutz; Rajrupa Paul; Mahdi Zamani; Jean-Baptiste Leran; Mirjana Dimitrievska; Anna Fontcuberta I Morral
Journal:  ACS Appl Energy Mater       Date:  2021-10-04

2.  Rotated domains in selective area epitaxy grown Zn3P2: formation mechanism and functionality.

Authors:  Maria Chiara Spadaro; Simon Escobar Steinvall; Nelson Y Dzade; Sara Martí-Sánchez; Pol Torres-Vila; Elias Z Stutz; Mahdi Zamani; Rajrupa Paul; Jean-Baptiste Leran; Anna Fontcuberta I Morral; Jordi Arbiol
Journal:  Nanoscale       Date:  2021-11-18       Impact factor: 7.790

  2 in total

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