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尺寸可调的L-肌肽包覆银纳米颗粒的简便合成及其在金属离子传感和对硝基苯酚催化降解中的作用。

Facile synthesis of size-tunable L-carnosine-capped silver nanoparticles and their role in metal ion sensing and catalytic degradation of -nitrophenol.

作者信息

Kumar Akash, Chadha Ridhima, Das Abhishek, Maiti Nandita, Gopal Rayavarapu Raja

机构信息

Nanomaterial Toxicology Laboratory, Drug and Chemical Toxicology Group, Food, Drug and Chemical, Environment and Systems Toxicology (FEST) Divison, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhawan, 31 Mahatma Gandhi Marg, Lucknow 226001, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

出版信息

Beilstein J Nanotechnol. 2024 Dec 6;15:1576-1592. doi: 10.3762/bjnano.15.124. eCollection 2024.

Abstract

ʟ-Carnosine is a dipeptide with notable antioxidant, antiglycation, metal chelating, and neuroprotective properties. Despite its many biological roles, applying ʟ-carnosine as a capping agent in nanoparticle synthesis has remained underexplored. This study explores the potential of ʟ-carnosine in synthesizing tunable plasmonic silver nanoparticles (ʟ-car-AgNPs). The formation of ʟ-car-AgNPs was confirmed via UV-vis optical absorption spectroscopy, showing single and double plasmonic peaks, depending on the synthesis conditions. Physicochemical characterization using TEM, FTIR, and Raman spectroscopy, as well as EDX and XRD revealed controlled aggregation, successful capping, and crystalline growth of the ʟ-car-AgNPs. The ʟ-car-AgNPs exhibited promising sensing capabilities with limits of detection of 141.79 ppb (1.2 μM) for Cd, 131.33 ppb (0.63 μM) for Pb, 215.35 ppb (2.8 μM) for As, and 245.49 ppb (4.7 μM) for Cr. Additionally, these nanoparticles demonstrated catalytic activity regarding the degradation of -nitrophenol (P-NP), achieving complete degradation of 0.25 and 1 mM solutions within 5 and 10 min, respectively. This study reveals the potential of ʟ-car-AgNPs for both heavy metal ion detection and catalytic degradation of P-NP, indicating their suitability for environmental monitoring and remediation applications. Further optimization and research are needed to expand their environmental applications and to understand their interaction mechanisms with various contaminants.

摘要

L-肌肽是一种具有显著抗氧化、抗糖化、金属螯合和神经保护特性的二肽。尽管它具有多种生物学作用,但将L-肌肽作为纳米颗粒合成中的封端剂的应用仍未得到充分探索。本研究探索了L-肌肽在合成可调谐等离子体银纳米颗粒(L-car-AgNPs)方面的潜力。通过紫外-可见吸收光谱证实了L-car-AgNPs的形成,根据合成条件显示出单峰和双峰等离子体峰。使用透射电子显微镜(TEM)、傅里叶变换红外光谱(FTIR)和拉曼光谱以及能量散射X射线光谱(EDX)和X射线衍射(XRD)进行的物理化学表征揭示了L-car-AgNPs的可控聚集、成功封端和晶体生长。L-car-AgNPs表现出有前景的传感能力,对镉(Cd)的检测限为141.79 ppb(1.2 μM),对铅(Pb)为131.33 ppb(0.63 μM),对砷(As)为215.35 ppb(2.8 μM),对铬(Cr)为245.49 ppb(4.7 μM)。此外,这些纳米颗粒在对硝基苯酚(P-NP)的降解方面表现出催化活性,分别在5分钟和10分钟内实现了0.25 mM和1 mM溶液的完全降解。本研究揭示了L-car-AgNPs在重金属离子检测和P-NP催化降解方面的潜力,表明它们适用于环境监测和修复应用。需要进一步优化和研究以扩大其环境应用并了解它们与各种污染物的相互作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c35f/11635285/0d9baf794446/Beilstein_J_Nanotechnol-15-1576-g002.jpg

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