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用于高效光电传感和光声成像的新型水溶性膦酸银簇组装材料。

Novel class of water-soluble phosphonate silver cluster assembled material for efficient photoelectric sensing and photoacoustic imaging.

作者信息

Biswas Sourav, Das Anish Kumar, Nath Akashdeep, Paul Souradip, Suheshkumar Singh M, Mandal Sukhendu

机构信息

School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram, Kerala 69551, India.

Biomedical Instrumentation and Imaging Laboratory, School of Physics, Indian Institute of Science Education and Research Thiruvananthapuram, Kerala 695551, India.

出版信息

Nanoscale. 2021 Oct 28;13(41):17325-17330. doi: 10.1039/d1nr05646h.

Abstract

Owing to the atomic precession and exotic photophysical properties, silver cluster assembled materials (CAMs) have been explored for use as functional nanomaterials in recent years. Although a small number of thiolate protected silver CAMs have previously been investigated, the synthesis of thiol-free analogues and their solubility remain challenging. Here, the structure-property correlation of a newly synthesized one-dimensional phenyl phosphonate protected [Ag(PhPOH)(apy)], (in which, 4,4'-azopyridine = apy) CAM is demonstrated. The multifunctional surface protecting ligand is strategically attached to the core for the first time to tailor the solubility, structural stability and charge transfer mechanism. The small size of the cluster building blocks, along with the choice of organic linker molecules, efficiently stabilize the structure intra-chain π-π stacking while inter-chains π-π interactions create a two-dimensional supramolecular architecture. The advantageous band structure associated with the charge transfer phenomenon and the high structural stability of the material are guided to explore the sustainable photoresponsive character of this CAM, resulting in the generation of an 82 nA photocurrent. Additionally, the unprecedented water solubility, which is very rare for this class of material, provides opportunities for use in biomedical imaging applications. The measured photoacoustic signal strength confirms the blood vessel mimicking capabilities of the portrayed material at a depth of approximately 3 mm inside chicken breast tissue.

摘要

由于原子进动和奇异的光物理性质,近年来银簇组装材料(CAMs)已被探索用作功能纳米材料。尽管此前已经研究了少数硫醇盐保护的银CAMs,但无硫醇类似物的合成及其溶解性仍然具有挑战性。在此,展示了一种新合成的一维苯基膦酸酯保护的[Ag(PhPOH)(apy)](其中,4,4'-偶氮吡啶 = apy)CAM的结构-性质相关性。多功能表面保护配体首次被战略性地连接到核心上,以调节溶解性、结构稳定性和电荷转移机制。簇构建块的小尺寸,以及有机连接分子的选择,有效地稳定了链内π-π堆积结构,而链间π-π相互作用形成了二维超分子结构。与电荷转移现象相关的有利能带结构和材料的高结构稳定性被用于探索这种CAM的可持续光响应特性,从而产生了82 nA的光电流。此外,这类材料非常罕见的前所未有的水溶性为生物医学成像应用提供了机会。测量的光声信号强度证实了所描绘的材料在鸡胸肉组织内约3 mm深度处具有模拟血管的能力。

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