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从纳米颗粒到纳米组装体的研究新进展:综述

Recent Advances in Research from Nanoparticle to Nano-Assembly: A Review.

作者信息

Bandaru Shamili, Arora Deepshika, Ganesh Kalathur Mohan, Umrao Saurabh, Thomas Sabu, Bhaskar Seemesh, Chakrabortty Sabyasachi

机构信息

Department of Chemistry, SRM University AP─Andhra Pradesh, Mangalagiri 522240, Andhra Pradesh, India.

Engineering Product Development, Singapore University of Technology and Design (SUTD), 8 Somapah Road, Singapore 487372, Singapore.

出版信息

Nanomaterials (Basel). 2024 Aug 26;14(17):1387. doi: 10.3390/nano14171387.

Abstract

The careful arrangement of nanomaterials (NMs) holds promise for revolutionizing various fields, from electronics and biosensing to medicine and optics. This review delves into the intricacies of nano-assembly (NA) techniques, focusing on oriented-assembly methodologies and stimuli-dependent approaches. The introduction provides a comprehensive overview of the significance and potential applications of NA, setting the stage for review. The oriented-assembly section elucidates methodologies for the precise alignment and organization of NMs, crucial for achieving desired functionalities. The subsequent section delves into stimuli-dependent techniques, categorizing them into chemical and physical stimuli-based approaches. Chemical stimuli-based self-assembly methods, including solvent, acid-base, biomolecule, metal ion, and gas-induced assembly, are discussed in detail by presenting examples. Additionally, physical stimuli such as light, magnetic fields, electric fields, and temperature are examined for their role in driving self-assembly processes. Looking ahead, the review outlines futuristic scopes and perspectives in NA, highlighting emerging trends and potential breakthroughs. Finally, concluding remarks summarize key findings and underscore the significance of NA in shaping future technologies. This comprehensive review serves as a valuable resource for researchers and practitioners, offering insights into the diverse methodologies and potential applications of NA in interdisciplinary research fields.

摘要

纳米材料(NMs)的精心排列有望彻底改变各个领域,从电子学、生物传感到医学和光学。本综述深入探讨了纳米组装(NA)技术的复杂性,重点关注定向组装方法和刺激依赖型方法。引言部分全面概述了NA的重要性和潜在应用,为综述奠定基础。定向组装部分阐明了纳米材料精确排列和组织的方法,这对于实现所需功能至关重要。随后的部分深入探讨了刺激依赖型技术,将其分为基于化学和物理刺激的方法。通过举例详细讨论了基于化学刺激的自组装方法,包括溶剂诱导、酸碱诱导、生物分子诱导、金属离子诱导和气体诱导组装。此外,还研究了光、磁场、电场和温度等物理刺激在驱动自组装过程中的作用。展望未来,综述概述了NA的未来发展范围和前景,突出了新兴趋势和潜在突破。最后,总结性评论总结了主要发现,并强调了NA在塑造未来技术方面的重要性。这篇全面的综述为研究人员和从业者提供了宝贵的资源,深入介绍了NA在跨学科研究领域的各种方法和潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/915c/11397018/cec0f2094ad6/nanomaterials-14-01387-g002.jpg

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