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Probing 2-D Coalescence and Aggregation with Tunable Paramagnetic Colloidal Clusters

Probing 2-D Coalescence and Aggregation with Tunable Paramagnetic Colloidal Clusters
使用可调顺磁胶体簇探测二维聚结和聚集
批准号:
1705703
负责人:
Sibani Biswal
金额:
$31.42万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-07-15 至 2020-12-31

项目摘要

项目成果

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中文摘要
翻译
bbiswal, Sibani l .液滴的聚结和胶体颗粒的聚集在材料加工应用和自然发生的过程中是重要的。在散装液体中自由悬浮的液滴和颗粒的聚结和聚集现象已经得到了广泛的研究。该奖项将支持对局限于表面的胶体粒子聚集的研究。在这种情况下,聚集的动力学预期与颗粒在体中的聚集有根本的不同。研究聚集的关键挑战是控制粒子之间可能导致聚集的力。在这个项目中,这一挑战将通过使用超顺磁粒子簇并将系统放置在旋转磁场中来解决。胶体团簇的聚集将在团簇之间的力可以调整并随时已知的条件下进行检查。将研究团簇聚集的动力学,团簇内粒子排列的变化以及聚集后获得的最终结构。这一结果将对正在开发具有独特电子、光学或催化性能的新型二维材料的材料科学家和工艺工程师有用。它还将为其他具有界面或晶界的工程材料提供新的见解,这些界面或晶界会影响材料的加工和可靠性。该项目将吸引不同学术水平的学生,包括参加莱斯大学暑期项目的社区大学生。磁性胶体悬浮液的独特性质的演示将发展为当地的高中学生。该奖项将支持二维胶体团簇聚结和聚集的实验研究。团簇将由微米大小的超顺磁胶体粒子分散在水溶液中组成。将施加高频旋转磁场,在顺磁胶体之间产生远距离、各向同性的吸引相互作用势,可以通过改变磁场强度精确地从3kBT调谐到40kBT。实验将确定相互作用势如何影响线张力和界面厚度等特性。该实验旨在监测聚结和聚集作为相互作用势的函数,并了解在群集组装过程中空隙空间是如何退火的。最后,该项目将重点关注二维系统中偏斜和缺陷的形成及其对二维簇动力学的影响。
英文摘要
CBET - 1705703PI: Biswal, Sibani L.Coalescence of liquid droplets and aggregation of colloidal particles are important in materials processing applications and in naturally-occurring processes. Coalescence and aggregation have been studied extensively for droplets and particles that are freely suspended in bulk liquids. This award will support research into aggregation of colloidal particles that are confined to a surface. The dynamics of aggregation in this case are expected to be fundamentally different than aggregation of particles in the bulk. The key challenge in studying aggregation is to control the forces between particles that can lead to aggregation. In this project, that challenge will be addressed by using clusters of superparamagnetic particles and placing the system in a rotating magnetic field. The aggregation of the colloidal clusters will be examined under conditions where the forces between the clusters can be tuned and are known at all times. The dynamics of cluster aggregation, changes in the arrangement of particles within the clusters, and the resulting structure that is obtained after aggregation will be studied. The results will be useful to material scientists and process engineers who are developing new two-dimensional materials that have unique electronic, optical, or catalytic properties. It will also provide new insight into other engineered materials that have interfaces or grain boundaries that can affect materials processing and reliability. The project will engage students at various academic levels, including community college students who participate in a summer program at Rice. Demonstrations of the unique properties of magnetic colloidal suspensions will be developed for local high-school students.This award will support an experimental study of coalescence and aggregation of two-dimensional colloidal clusters. The clusters will consist of micron-sized superparamagnetic colloidal particles dispersed in aqueous solution. A high frequency rotating magnetic field will be applied, resulting in a long-range, isotropic attractive interaction potential between the paramagnetic colloids that can be precisely tuned from 3kBT to 40kBT by varying the strength of the magnetic field. The experiments will determine how the interactional potential influences properties such as line tension and interfacial thickness. The experiment will be designed to monitor coalescence and aggregation as a function of interaction potential and to understand how void spaces are annealed during the assembly of clusters. Finally, the project will focus on the formation of disclinations and defects in two-dimensional systems and their implications on two-dimensional cluster dynamics.
期刊论文(7)
专著(0)
科研奖励(0)
会议论文
From strings to coils: Rotational dynamics of DNA-linked colloidal chains
从弦到线圈:DNA 连接胶体链的旋转动力学
DOI: 10.1103/physrevfluids.2.104102
发表时间: 2017
期刊: Physical Review Fluids
影响因子: 2.7
作者: [Kuei, Steve, Garza, Burke, Biswal, Sibani Lisa]
通讯作者: Biswal, Sibani Lisa
DOI: 10.1103/physrevmaterials.2.025602
发表时间: 2018-02-07
期刊: PHYSICAL REVIEW MATERIALS
影响因子: 3.4
作者: [Hilou, Elaa, Du, Di, Biswal, Sibani Lisa]
通讯作者: Biswal, Sibani Lisa
DOI: 10.1039/c9sm00477g
发表时间: 2019
期刊: Soft Matter
影响因子: 3.4
作者: [Vecchiolla, Daniel, Biswal, Sibani Lisa]
通讯作者: Biswal, Sibani Lisa
DOI: 10.1039/d0sm01100b
发表时间: 2020-10-14
期刊: SOFT MATTER
影响因子: 3.4
作者: [Hilou, Elaa, Joshi, Kedar, Biswal, Sibani Lisa]
通讯作者: Biswal, Sibani Lisa
PFI-RP: Micellar Nanofluids to Reduce Use of Harmful Solvents in Oil and Gas Production
  • 批准号:
    2141112
  • 项目类别:
    Standard Grant
  • 资助金额:
    $54.97万
  • 财政年份:
    2022
  • 负责人:
    Sibani Biswal
  • 依托单位:
MRI: Acquisition of LUMICKS C-Trap Ultra-High-Resolution Optical Tweezer System
  • 批准号:
    2117380
  • 项目类别:
    Standard Grant
  • 资助金额:
    $104.3万
  • 财政年份:
    2021
  • 负责人:
    Sibani Biswal
  • 依托单位:
CAREER: Colloidal Origami: Directing and Designing Complex Colloidal Assemblies Using Magnetic Fields
  • 批准号:
    0955003
  • 项目类别:
    Standard Grant
  • 资助金额:
    $41.42万
  • 财政年份:
    2009
  • 负责人:
    Sibani Biswal
  • 依托单位:
海外基金