Sakiat Hossain
Tokyo University of Science
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Featured researches published by Sakiat Hossain.
Chemical Record | 2017
Yoshiki Niihori; Sakiat Hossain; Sachil Sharma; Bharat Kumar; Wataru Kurashige; Yuichi Negishi
It is now possible to accurately synthesize thiolate (SR)-protected gold clusters (Aun (SR)m ) with various chemical compositions with atomic precision. The geometric structure, electronic structure, physical properties, and functions of these clusters are well known. In contrast, the ligand or metal atom exchange reactions between these clusters and other substances have not been studied extensively until recently, even though these phenomena were observed during early studies. Understanding the mechanisms of these reactions could allow desired functional metal clusters to be produced via exchange reactions. Therefore, we have studied the exchange reactions between Aun (SR)m and analogous clusters and other substances for the past four years. The results have enabled us to gain deep understanding of ligand exchange with respect to preferential exchange sites, acceleration means, effect on electronic structure, and intercluster exchange. We have also synthesized several new metal clusters using ligand and metal exchange reactions. In this account, we summarize our research on ligand and metal exchange reactions.
APL Materials | 2017
Yoshiki Niihori; Sakiat Hossain; Bharat Kumar; Lakshmi V. Nair; Wataru Kurashige; Yuichi Negishi
Thiolate-protected metal clusters can exchange ligands or metal atoms with other substances such as coexisting ligands, complexes, and metal clusters in solution. Using these reactions, it is possible to synthesize metal clusters with new physical and chemical properties. Although the occurrence of such reactions was recognized nearly 20 years ago, their details were not well understood. In recent years, techniques for the precise synthesis of metal clusters and their characterization have progressed considerably and, as a result, details of these reactions have been clarified. In this perspective, we focus on the most-studied thiolate-protected gold clusters and provide a summary of recent findings as well as future expectations concerning the exchange reactions of these clusters.
Journal of Physical Chemistry Letters | 2018
Sakiat Hossain; Tasuku Ono; Mahiro Yoshioka; Guoxiang Hu; Mai Hosoi; Zhaoheng Chen; Lakshmi V. Nair; Yoshiki Niihori; Wataru Kurashige; De-en Jiang; Yuichi Negishi
The mixing of heteroelements in metal clusters is a powerful approach to generate new physical/chemical properties and functions. However, as the kinds of elements increase, control of the chemical composition and geometric structure becomes difficult. We succeeded in the compositionally selective synthesis of phenylethanethiolate-protected trimetallic Au∼20Ag∼4Pd and Au∼20Ag∼4Pt clusters, Au∼20Ag∼4Pd(SC2H4Ph)18 and Au∼20Ag∼4Pt(SC2H4Ph)18. Single-crystal X-ray structural analysis revealed the precise position of each metal element in these metal clusters. Reacting with thiol at an elevated temperature was found to be important to direct the metal elements to the most stable positions. The electronic structures of these trimetallic clusters become more discretized than those of the related bimetallic clusters due to orbital splitting.
Journal of Physical Chemistry Letters | 2018
Yoshiki Niihori; Yuki Koyama; Seiichiro Watanabe; Sayaka Hashimoto; Sakiat Hossain; Lakshmi V. Nair; Bharat Kumar; Wataru Kurashige; Yuichi Negishi
Techniques to control the chemical compositions and geometric structures of alloy clusters are indispensable to understand the correlation between the structures and physical/chemical properties of alloy clusters. In this study, we established a method to separate thiolate-protected 25-atom gold-silver alloy clusters (Au25- xAg x(SR)18) according to their chemical composition and structural isomer. Furthermore, using this method, we revealed that an isomeric distribution of the products exists in Au25- xAg x(SR)18 ( x ≥ 2) and that the distribution of these isomers depends on the synthesis method and standing time in solution. In this study, it was also demonstrated that the continuous discretization of the electronic structure is induced by the Ag substitution. This method can also be used to separate mixtures of [Au24M(SR)18]0 (M = Au, Pt, or Pd) and other Au-Ag alloy clusters ([Au36- xAg x(SR)24]0 and [Au38- xAg x(SR)24]0). This method is expected to be used to obtain comprehensive knowledge of the structural-property correlation of alloy clusters.
Journal of Physical Chemistry C | 2016
Sakiat Hossain; Wataru Kurashige; Shota Wakayama; Bharat Kumar; Lakshmi V. Nair; Yoshiki Niihori; Yuichi Negishi
Journal of Physical Chemistry C | 2017
Lakshmi V. Nair; Sakiat Hossain; Shota Wakayama; Shunjiro Takagi; Mahiro Yoshioka; Juri Maekawa; Atsuya Harasawa; Bharat Kumar; Yoshiki Niihori; Wataru Kurashige; Yuichi Negishi
Industrial & Engineering Chemistry Research | 2017
Yoshiki Niihori; Yoshihiro Kikuchi; Daisuke Shima; Chihiro Uchida; Sachil Sharma; Sakiat Hossain; Wataru Kurashige; Yuichi Negishi
Nanoscale | 2018
Yoshiki Niihori; Daisuke Shima; Kana Yoshida; Kota Hamada; Lakshmi V. Nair; Sakiat Hossain; Wataru Kurashige; Yuichi Negishi
Archive | 2018
Sakiat Hossain; Lakshmi V. Nair; Junta Inoue; Yuki Koyama; WataruKurashige; Yuichi Negishi
Nanoscale | 2018
Lakshmi V. Nair; Sakiat Hossain; Shunjiro Takagi; Yukari Imai; Guoxiang Hu; Shota Wakayama; Bharat Kumar; Wataru Kurashige; De-en Jiang; Yuichi Negishi