无溶剂条件下的砷(III)和砷(V)络合物及其生成砷纳米粒子的动力学因素

IF 2.7 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Inorganica Chimica Acta Pub Date : 2024-11-05 DOI:10.1016/j.ica.2024.122434
Kapilas Das , Sanjoy Kumar Maji , Debasish Pal , Anjali Pal , Samaresh Jana , Sohini Sarkar , Tinku Dhankhar , Sinjan Choudhary , Nibedita Das , Tarasankar Pal
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引用次数: 0

摘要

儿茶酚和砷(III 和 V)钠盐的透明熔体是通过研磨混合程序(GMP)单独获得的。儿茶酚和砷盐之间的放热反应产生的熔融物激发了等温滴定量热法(ITC),从而证明了复合物儿茶酚酸盐的形成倾向。单独的等温滴定量热结果从结构上证实了室温下邻苯二酚在水中形成的两种不同的单阴离子络合物,一种为砷 (III) 离子,另一种为砷 (V) 离子。然后,确认了这两种单阴离子络合物的组成,其中砷 (III) 和砷 (V) 的化学计量比分别为 1:2 和 1:3 (w∕w)。研究首次表明,这两种络合物可以补充两种纯净的前体,通过 pH 值控制氧化还原反应制备有用的砷纳米粒子(As NP)。同样,砷纳米粒子和 HAuCl4 之间的电化学置换反应(GRR)也生成了与砷纳米粒子大小相当的金纳米粒子。因此,两种邻苯二酚的热力学结果、结合常数(Kb)值、氧化还原动力学研究和离子缔合物的形成清楚地区分了 As(III) 和 As(V) 邻苯二酚的稳定性(易变性和惰性)。最终,电化学、电化学置换反应、DLS、热分析和多种光谱分析结果为砷的复合物儿茶酚提供了第一手支持,砷是一种对嵌段类金属,在两种不同的(III)和(V)氧化态中分别具有易变性和惰性特征。
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Arsenic (III) and (V) complexes from solvent free condition and their kinetic factors leading to arsenic nanoparticles
A clear melt from catechol and sodium salts of arsenic (III and V) were obtained individually from the grinding mixing protocol (GMP). The as-obtained molten mass from exothermic reaction between catechol and arsenic salts motivated isothermal titration calorimetry (ITC) advocating the propensity of complex catecholate formation. Individual ITC results substantiated structurally two different mono-anionic complexes, one for arsenic (III) and the other for arsenic (V) ions, of catechol in water at room temperature. Then, the compositions of both the mono-anionic complexes with stoichiometry 1:2 and 1:3 (w∕w) were confirmed for arsenic (III) and (V), respectively. It was shown here for the 1st time that both the complexes supplemented two neat precursors for useful arsenic nanoparticle (As NP) preparation from pH control redox reactions. Again, galvanic replacement reaction (GRR) between As NP and HAuCl4 evolved Au NPs of comparable size as that of As NPs. Thus, thermodynamic results, binding constant (Kb) values, redox kinetic studies and ion associate formation of the two catecholates clearly differentiated the stability (labile and inert character) of As(III) and As(V) catecholates. Conclusively, electrochemistry, galvanic replacement reaction, DLS, thermal analysis, and diverse spectrometric results provided 1st hand support for the complex catecholates of arsenic, a p-block metalloid as labile and inert characters respectively in two different (III) and (V) oxidation states.
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来源期刊
Inorganica Chimica Acta
Inorganica Chimica Acta 化学-无机化学与核化学
CiteScore
6.00
自引率
3.60%
发文量
440
审稿时长
35 days
期刊介绍: Inorganica Chimica Acta is an established international forum for all aspects of advanced Inorganic Chemistry. Original papers of high scientific level and interest are published in the form of Articles and Reviews. Topics covered include: • chemistry of the main group elements and the d- and f-block metals, including the synthesis, characterization and reactivity of coordination, organometallic, biomimetic, supramolecular coordination compounds, including associated computational studies; • synthesis, physico-chemical properties, applications of molecule-based nano-scaled clusters and nanomaterials designed using the principles of coordination chemistry, as well as coordination polymers (CPs), metal-organic frameworks (MOFs), metal-organic polyhedra (MPOs); • reaction mechanisms and physico-chemical investigations computational studies of metalloenzymes and their models; • applications of inorganic compounds, metallodrugs and molecule-based materials. Papers composed primarily of structural reports will typically not be considered for publication.
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