Das Anamika, Chatterjee Raktima, Sarkar Shinjini, Ninave Grishma, Bose Debosreeta, Dutta Amit Kumar, Biswas Satarupa, Mukherjee Moumita, Venkatesan Ragavendran, Majee Rahul, Dasgupta Saumya, Mukhopadhyay Jayanta, Mukhopadhyay Madhumita
Department of Physics, Acharya Prafulla Chandra College, New Barrackpore, Kolkata 700131, West Bengal, India.
Department of Physics, Adamas University, Kolkata-Barrackpore-Barasat Road, Kolkata 700126, West Bengal, India.
ACS Omega. 2025 Aug 19;10(34):38609-38628. doi: 10.1021/acsomega.5c03323. eCollection 2025 Sep 2.
The present research reports the synthesis of poly-[ethylene oxide]-based composite films (500 μm) containing metal nanoparticles (NPs) [Ag ( ∼ 6 nm), Cu ( ∼ 25 nm), and Fe ( ∼ 35 nm)] as the mobile phase. The novelty of the study is in the corroboration of a plausible mechanism for the generation of metal NPs through green synthesis using herbal extracts of (Tea) and (Neem). Density functional theory (DFT) is used to optimize the phytoreductants present in both biosources, wherein the reducing and/or stabilizing functional entities are primarily hydroxyl groups (-OH). The transition energy (band gap, Δ ) is found to be minimum for Epicatechin gallate (1.05 eV, tea) and Sitosterol (0.58 eV, neem), which could act as potent phytoreductants for initiating a redox reaction, followed by subsequent capping through secondary bond formation. Upon increasing the loading of metal NPs from 1 to 7 wt %, the ionic conductivity of a PEO composite increases (0.1 S·cm) for PAg (N: neem). With a subsequent increase in loading (10 wt %), the crystalline region within PEO is enhanced (≥83% using DSC), which restricts the ion migration and lowers the charge storage capacity, as studied using dielectric constants and complex relaxation processes (EIS and DRT). Among all of the compositions, PCu is observed to exhibit negligible performance deterioration (Δtan δ for 18,500 h → 0). However, PAg system(s) are good ion conductors with significant dielectric nature, but they suffer from particle ripening. Hence, metal NPs, which functionalize PEO films, could be effectively synthesized using a green synthesis route and applied as a solid electrolyte for device application.
本研究报告了基于聚环氧乙烷的复合薄膜(500微米)的合成,该薄膜含有金属纳米颗粒(NPs)[银(约6纳米)、铜(约25纳米)和铁(约35纳米)]作为流动相。该研究的新颖之处在于证实了一种通过使用(茶)和(印楝)的草药提取物进行绿色合成来生成金属纳米颗粒的合理机制。密度泛函理论(DFT)用于优化两种生物源中存在的植物还原剂,其中还原和/或稳定功能实体主要是羟基(-OH)。发现表儿茶素没食子酸酯(1.05电子伏特,茶)和植物甾醇(0.58电子伏特,印楝)的跃迁能(带隙,Δ)最小,它们可作为引发氧化还原反应的有效植物还原剂,随后通过二次键形成进行封端。随着金属纳米颗粒负载量从1 wt%增加到7 wt%,PEO复合材料的离子电导率增加(PAg(N:印楝)为0.1 S·cm)。随着负载量进一步增加(10 wt%),PEO内的结晶区域增强(使用DSC时≥83%),这限制了离子迁移并降低了电荷存储容量,这是通过介电常数和复弛豫过程(EIS和DRT)研究得出的。在所有组合物中,观察到PCu的性能劣化可忽略不计(18500小时内Δtanδ→0)。然而,PAg体系是具有显著介电性质的良好离子导体,但它们存在颗粒熟化问题。因此,可通过绿色合成路线有效地合成使PEO薄膜功能化的金属纳米颗粒,并将其用作器件应用的固体电解质。