Morphological Design and Synthesis of Nanoparticles (Second Edition).

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Title: Morphological Design and Synthesis of Nanoparticles (Second Edition).
Authors: Honciuc, Mirela1 (AUTHOR) honciuc.mirela@icmpp.ro, Honciuc, Andrei1 (AUTHOR)
Source: Nanomaterials (2079-4991). Feb2026, Vol. 16 Issue 4, p255. 5p.
Subjects: Nanoparticles, Morphology, Biomedical engineering, Gold clusters, Catalysis, Chemical processes, Janus particles, Sustainable chemistry
Abstract: This article focuses on the morphological design and synthesis of nanoparticles, emphasizing how particle size, shape, and internal structure critically influence their functional properties across various applications. It highlights recent advances in green chemistry and engineering-based synthetic methods that enable precise control over nanoparticle morphology, composition, and scalability. Key research areas include sustainable synthesis approaches using natural reducing agents and flow-based microfluidics, the behavior and assembly of asymmetric Janus nanoparticles, size-dependent electronic and magnetic properties of nanoclusters, and the impact of nanoparticles on the phase behavior of surrounding soft matter matrices. Collectively, these studies demonstrate the interconnected roles of morphology and synthesis in tailoring nanoparticle performance for catalysis, biomedicine, energy, and environmental applications. [Extracted from the article]
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Database: Engineering Source
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Abstract:This article focuses on the morphological design and synthesis of nanoparticles, emphasizing how particle size, shape, and internal structure critically influence their functional properties across various applications. It highlights recent advances in green chemistry and engineering-based synthetic methods that enable precise control over nanoparticle morphology, composition, and scalability. Key research areas include sustainable synthesis approaches using natural reducing agents and flow-based microfluidics, the behavior and assembly of asymmetric Janus nanoparticles, size-dependent electronic and magnetic properties of nanoclusters, and the impact of nanoparticles on the phase behavior of surrounding soft matter matrices. Collectively, these studies demonstrate the interconnected roles of morphology and synthesis in tailoring nanoparticle performance for catalysis, biomedicine, energy, and environmental applications. [Extracted from the article]
ISSN:20794991
DOI:10.3390/nano16040255