Shape Effects on the 2D Self-Assembly of Lithographically Fabricated Nanoparticles

IF 5.1 3区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Nanoscale Pub Date : 2025-09-19 DOI:10.1039/d5nr03413b
Yi-Yu Cai, Zeyu Gu, Shengsong Yang, Christopher B Murray, Cherie Kagan
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引用次数: 0

Abstract

We fabricate and polymer ligate square, pentagonal, and hexagonal nanoplates and investigate the effect of nanoparticle (NP) shape on the self-organization of their dispersions at the liquid-air interface into two-dimensional assemblies. Hexagonal NPs assemble into interlocking hexagonal lattices, exhibiting the highest translational order with a characteristic correlation length (ξ0.5) extending over nine NP building blocks. Square NP assemblies are disordered, characterized by ξ0.5 averaging around three NP units, consistent with the propensity of NPs to slide and form coexisting Λ1 and Λ0 lattices. Pentagonal NP assemblies show six-fold coordination, but do not fully tessellate the plane, yielding anisotropic assemblies with intermediate order and ξ0.5 of about seven NP units. In binary NP assemblies, mixed pentagonal and hexagonal NP assemblies with shared six-fold coordination show greater ordering in comparison to assemblies of square and hexagonal NPs.
光刻纳米颗粒二维自组装的形状效应
我们制作和聚合方形、五边形和六边形纳米板,并研究纳米颗粒(NP)形状对其在液-气界面分散成二维组件的自组织的影响。六边形NP组合成互锁的六边形晶格,表现出最高的平移顺序,特征相关长度(ξ0.5)延伸到9个NP构建块上。方形NP组件是无序的,其特征为ξ0.5平均约为3个NP单元,与NP滑动并形成共存Λ1和Λ0晶格的倾向一致。五边形NP组件具有六重配位,但不完全镶嵌平面,产生的各向异性组件具有中间阶和约7个NP单元的ξ0.5。在二元NP组合中,共享六重配位的混合五边形和六边形NP组合比正方形和六边形NP组合表现出更高的有序性。
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来源期刊
Nanoscale
Nanoscale CHEMISTRY, MULTIDISCIPLINARY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
12.10
自引率
3.00%
发文量
1628
审稿时长
1.6 months
期刊介绍: Nanoscale is a high-impact international journal, publishing high-quality research across nanoscience and nanotechnology. Nanoscale publishes a full mix of research articles on experimental and theoretical work, including reviews, communications, and full papers.Highly interdisciplinary, this journal appeals to scientists, researchers and professionals interested in nanoscience and nanotechnology, quantum materials and quantum technology, including the areas of physics, chemistry, biology, medicine, materials, energy/environment, information technology, detection science, healthcare and drug discovery, and electronics.
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