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硒代水杨酸盐;一种研究较少的多功能硫代水杨酸盐配体的重元素类似物。

Selenosalicylate; a little-studied heavy-element analogue of the versatile thiosalicylate ligand.

作者信息

Atiga Simeon, Saunders Graham C, Henderson William

机构信息

Chemistry, School of Science, University of Waikato Private Bag 3105 Hamilton 3240 New Zealand

Department of Chemistry, Faculty of Natural Sciences, Kogi State University PMB 1008, Anyigba Kogi State Nigeria.

出版信息

RSC Adv. 2024 Apr 16;14(18):12323-12336. doi: 10.1039/d4ra00926f.

Abstract

Selenosalicylic acid (-HSeCHCOH), the heavy element congener of the widely studied thiosalicylic acid, was prepared by reaction of 2-carboxybenzenediazonium chloride (HOCCHNCl) with NaSe, followed by reduction of the resulting diselenide (SeCHCOH) with zinc and acetic acid. The coordination chemistry of the selenosalicylate ligand towards a variety of platinum(ii), palladium(ii), nickel(ii), gold(iii), gold(i), rhodium(iii), iridium(iii) and ruthenium(ii) centres was explored. X-ray crystal structure determinations were carried out on the complexes [Pt(SeCHCO)(PPh)], [{(-cym)Ru(SeCHCO)}] (-cym = η--cymene, CHCHCH(CH)), [{CpRh(SeCHCO)}] (Cp = η-CMe) and [CpIr(SeCHCO)(PPh)], and comparisons are made with corresponding thiosalicylate complexes. The complexes were characterised by NMR spectroscopy as well as ESI mass spectrometry, which indicated a greater propensity for fragmentation including by selenium loss, compared to the thiosalicylate analogues. Hirshfeld surface analysis to visualise and quantify intermolecular interactions revealed the dominance of H⋯H contacts in [{(-cym)Ru(SeCHCO)}] and [CpIr(SeCHCO)(PPh)].

摘要

硒水杨酸(-HSeCHCOH)是广泛研究的硫代水杨酸的重元素类似物,它通过2-羧基苯重氮氯化物(HOCCHNCl)与NaSe反应制备,然后用锌和乙酸还原生成的二硒化物(SeCHCOH)得到。研究了硒水杨酸配体与多种铂(II)、钯(II)、镍(II)、金(III)、金(I)、铑(III)、铱(III)和钌(II)中心的配位化学。对配合物[Pt(SeCHCO)(PPh)]、[{(-cym)Ru(SeCHCO)}](-cym = η--异丙苯,CHCHCH(CH))、[{CpRh(SeCHCO)}](Cp = η-CMe)和[CpIr(SeCHCO)(PPh)]进行了X射线晶体结构测定,并与相应的硫代水杨酸配合物进行了比较。这些配合物通过核磁共振光谱以及电喷雾质谱进行了表征,结果表明与硫代水杨酸类似物相比,它们更倾向于发生包括硒损失在内的碎片化。通过Hirshfeld表面分析来可视化和量化分子间相互作用,结果表明在[{(-cym)Ru(SeCHCO)}]和[CpIr(SeCHCO)(PPh)]中H⋯H接触占主导地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4961/11019910/007e00135854/d4ra00926f-s1.jpg

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