Kulkarni Atharva Yeshwant, Karmakar Gourab, Shah Alpa Y, Nigam Sandeep, Kumbhare Gayatri, Tyagi Adish, Butcher Raymond J, Chauhan Rohit Singh, Kumar N Naveen
Department of Chemistry, K. J. Somaiya College of Science and Commerce, Vidyavihar, Mumbai 400077, India.
Chemistry Division, Bhabha Atomic Research Centre, Mumbai 400085, India.
Dalton Trans. 2023 Nov 14;52(44):16224-16234. doi: 10.1039/d3dt02143b.
Bismuthinite (BiS) nanostructures have garnered significant interest due to their appealing photoresponsivity which has positioned them as an attractive choice for energy conversion applications. However, to utilize their full potential, a simple and economically viable method of preparation is highly desirable. Herein, we present the synthesis and characterization including structural elucidation of a new air- and moisture-stable bismuth-pyrimidylthiolate complex. This complex serves as an efficient single-source molecular precursor for the facile preparation of phase-pure BiS nanostructures. Powder X-ray diffraction (PXRD), Raman spectroscopy, electron dispersive spectroscopy (EDS) and electron microscopy techniques were used to assess the crystal structure, phase purity, elemental composition and morphology of the as-prepared nanostructures. This study also revealed the profound effects of temperature and growth duration on the crystallinity, phase formation and morphology of nanostructures. The optical band gap of the nanostructures was tuned within the range of 1.9-2.3 eV, which is blue shifted with respect to the bulk bandgap and suitable for photovoltaic applications. Liquid junction photo-electrochemical cells fabricated from the as-prepared BiS nanostructure exhibit efficient photoresponsivity and good photo-stability, which project them as promising candidates for alternative low-cost photon absorber materials.
辉铋矿(BiS)纳米结构因其具有吸引人的光响应性而备受关注,这使其成为能量转换应用的一个有吸引力的选择。然而,为了充分发挥其潜力,一种简单且经济可行的制备方法是非常必要的。在此,我们展示了一种新型的空气和水分稳定的铋-嘧啶硫醇盐配合物的合成与表征,包括其结构解析。这种配合物作为一种高效的单源分子前驱体,可用于简便地制备相纯的BiS纳米结构。粉末X射线衍射(PXRD)、拉曼光谱、电子能谱(EDS)和电子显微镜技术被用于评估所制备纳米结构的晶体结构、相纯度、元素组成和形态。该研究还揭示了温度和生长持续时间对纳米结构的结晶度、相形成和形态的深远影响。纳米结构的光学带隙在1.9 - 2.3 eV范围内可调,相对于体带隙发生蓝移,适用于光伏应用。由所制备的BiS纳米结构制成的液结光电化学电池表现出高效的光响应性和良好的光稳定性,这表明它们是替代低成本光子吸收材料的有前途的候选者。