1955Journal of the Physical Society of JapanRequires access

On the Fine Structures of X-ray Absorption Spectra of Amorphous Substances The Amorphous State of the Binary System of Nickel-Sulfur. II.

Masao Sawada, Kenjirō Tsutsumi, Toshio Shiraiwa, Masayoshi Obashi

Open publisher page 15 citations

Abstract

We prepared the simultaneously electrodeposited Ni-S containing O, 9, 13, 17 and 25 wt. % sulfur and studied their crystalline forms and electrical resistances. Of these samples, those containing 9, 13 and 17% sulfur are amorphous and crystallize when heated to 180°C. The above results were reported in paper I. 1) We photographed the fine structures of Ni K X-ray absorption spectra in the amorphous and crystalline states of the same samples. We measured the wave-lengths of the fine structures of the Ni K absorption edge and intensities of their non-absorption maxima. We find the fine structures in the amorphous states; their shapes and wave-lengths show a similarity to those shown by the substances which have undergone crystallization. But generally, in the amorphous state, the fine structure is less pronounced at the shorter wave-length side than in the crystalline state. We conclude from the above results and previous results in paper I that the amorphous Ni-S is the aggregate state of fine crystals, and that the crystal size influences the region of the extended fine structure.

About this research paper

What this paper is about

We prepared the simultaneously electrodeposited Ni-S containing O, 9, 13, 17 and 25 wt. % sulfur and studied their crystalline forms and electrical resistances. Of these samples, those containing 9, 13 and 17% sulfur are amorphous and crystallize when heated to 180°C. The above results were reported in paper I. 1) We photographed the fine structures of Ni K X-ray absorption spectra in the amorphous and crystalline states of the same samples. We measured the wave-lengths of the fine structures of the Ni K absorption edge and intensities of their non-absorption maxima. We find the fine structures in the amorphous states; their shapes and wave-lengths show a similarity to those shown by the substances which have undergone crystallization. But generally, in the amorphous state, the fine structure is less pronounced at the shorter wave-length side than in the crystalline state. We conclude from the above results and previous results in paper I that the amorphous Ni-S is the aggregate state of fine crystals, and that the crystal size influences the region of the extended fine structure.

Why it matters

OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We prepared the simultaneously electrodeposited Ni-S containing O, 9, 13, 17 and 25 wt. % sulfur and studied their crystalline forms and electrical resistances. Of these samples, those containing 9, 13 and 17% sulfur are amorphous and crystallize when heated to 180°C. The above results were reported in paper I. 1) We photographed the fine structures of Ni K X-ray absorption spectra in the amorphous and crystalline states of the same samples. We measured the wave-lengths of the fine structures of the Ni K absorption edge and intensities of their non-absorption maxima. We find the fine structures in the amorphous states; their shapes and wave-lengths show a similarity to those shown by the substances which have undergone crystallization. But generally, in the amorphous state, the fine structure is less pronounced at the shorter wave-length side than in the crystalline state. We conclude from the above results and previous results in paper I that the amorphous Ni-S is the aggregate state of fine crystals, and that the crystal size influences the region of the extended fine structure.

Key concepts: Amorphous solid, Materials science, Crystallization, Absorption (acoustics), Crystal (programming language), Absorption edge, Absorption spectroscopy, Nickel

Related papers

Back to paper searchBrowse research topicsOriginal source
On the Fine Structures of X-ray Absorption Spectra of Amorphous Substances The Amorphous State of the Binary System of Nickel-Sulfur. II. — Research Paper | ScholarLens