Reinforcing nanocolloidal crystals by tuning interparticle bonding via atomic layer deposition

被引:7
|
作者
Zhang, Di [1 ]
Zhang, Lei [2 ]
Lee, Daeyeon [2 ]
Cheng, Xuemei [3 ]
Feng, Gang [1 ]
机构
[1] Villanova Univ, Dept Mech Engn, Villanova, PA 19085 USA
[2] Univ Penn, Dept Chem & Biomol Engn, Philadelphia, PA 19104 USA
[3] Bryn Mawr Coll, Dept Phys, Bryn Mawr, PA 19010 USA
基金
美国国家科学基金会;
关键词
Nanoindentation; Nanostructured materials; Mechanical properties; Atomic layer deposition; Granular materials; SILICA COLLOIDAL CRYSTALS; THIN-FILMS; NANOINDENTATION HARDNESS; MECHANICAL-PROPERTIES; OPTICAL-PROPERTIES; ELASTIC-MODULUS; LOW-TEMPERATURE; YOUNGS MODULUS; INVERSE OPALS; FORCES;
D O I
10.1016/j.actamat.2015.05.039
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Nanocolloidal crystals have emerging applications in photonics and optoelectronics, but their poor mechanical robustness is a major hindrance to their widespread application. In this study, we observed that atomic layer deposition could be used to tune the mechanical properties of nanocolloidal crystals and that atomic-layer-deposition-treated nanocolloidal crystals could be drastically stiffened by a factor of 30 and hardened by a factor of 150. Nanocolloidal crystals composed of monodisperse 254 nm and 289 nm SiO2 nanocolloids were characterized using nanoindentation, yielding low hardness and modulus values. The nanocolloidal crystals exhibit granular behavior with intrinsically weak interparticle bonding. The use of atomic layer deposition enabled us to precisely tune the interparticle bonding by depositing a reinforcing layer around all of the nanocolloids. By increasing the atomic-layer-deposition thickness, the deformation mechanism of nanocolloidal crystals transitions from granular to bonded granular and, finally, to particle-reinforced composite behavior. We believe this work presents the first-ever systematic study of such transitions based on both experimental and theoretical approaches. The mechanism-based models agree well with the experimental results, further validating the proposed transition mechanism. Our work comprehensively explains the effect of atomic layer deposition on the relationship between the structural and mechanical properties of nanocolloidal crystals, providing insights into the mechanical reinforcement mechanism of other types of porous materials and nanocolloidal assemblies. (C) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:216 / 223
页数:8
相关论文
共 50 条
  • [31] Surface Tuning of Solid Oxide Fuel Cell Cathode by Atomic Layer Deposition
    Choi, Hyung Jong
    Bae, Kiho
    Grieshammer, Steffen
    Han, Gwon Deok
    Park, Suk Won
    Kim, Jun Woo
    Jang, Dong Young
    Koo, Junmo
    Son, Ji-Won
    Martin, Manfred
    Shim, Joon Hyung
    ADVANCED ENERGY MATERIALS, 2018, 8 (33)
  • [32] Tuning the mechanical properties of vertical graphene sheets through atomic layer deposition
    Davami, Keivan
    Jiang, Yijie
    Cortes, John
    Lin, Chen
    Shaygan, Mehrdad
    Turner, Kevin T.
    Bargatin, Igor
    NANOTECHNOLOGY, 2016, 27 (15)
  • [33] Fermi Level Tuning of ZnO Films Through Supercycled Atomic Layer Deposition
    Ruomeng Huang
    Sheng Ye
    Kai Sun
    Kian S. Kiang
    C. H. (Kees) de Groot
    Nanoscale Research Letters, 2017, 12
  • [34] Fine tuning of nanopipettes using atomic layer deposition for single molecule sensing
    Sze, Jasmine Y. Y.
    Kumar, Shailabh
    Ivanov, Aleksandar P.
    Oh, Sang-Hyun
    Edel, Joshua B.
    ANALYST, 2015, 140 (14) : 4828 - 4834
  • [35] Atomic layer deposition in nanostructured photovoltaics: tuning optical, electronic and surface properties
    Palmstrom, Axel F.
    Santra, Pralay K.
    Bent, Stacey F.
    NANOSCALE, 2015, 7 (29) : 12266 - 12283
  • [36] Tuning the Pore Size of Ink-Bottle Mesopores by Atomic Layer Deposition
    Dendooven, Jolien
    Goris, Bart
    Devloo-Casier, Kilian
    Levrau, Elisabeth
    Biermans, Ellen
    Baklanov, Mikhail R.
    Ludwig, Karl F.
    Van der Voort, Pascal
    Bals, Sara
    Detavernier, Christophe
    CHEMISTRY OF MATERIALS, 2012, 24 (11) : 1992 - 1994
  • [37] Fermi Level Tuning of ZnO Films Through Supercycled Atomic Layer Deposition
    Huang, Ruomeng
    Ye, Sheng
    Sun, Kai
    Kiang, Kian S.
    de Groot, C. H.
    NANOSCALE RESEARCH LETTERS, 2017, 12
  • [38] Plasmonic tuning of aluminum doped zinc oxide nanostructures by atomic layer deposition
    Riley, Conor T.
    Kieu, Tien A.
    Smalley, Joseph S. T.
    Pan, Si Hui Athena
    Kim, Sung Joo
    Post, Kirk W.
    Kargar, Alireza
    Basov, Dimitri N.
    Pan, Xiaoqing
    Fainman, Yeshaiahu
    Wang, Deli
    Sirbuly, Donald J.
    PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2014, 8 (11): : 948 - 952
  • [39] Enhancing the stability/performance of catalysts via atomic layer deposition
    Marshall, Christopher
    Zhang, Hongbo
    Camacho-Bunquin, Jeffrey
    Elam, Jeffrey
    Kennedy, Robert
    Stair, Peter
    Poeppelmeier, Kenneth
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 252
  • [40] Powder Coatings via Atomic Layer Deposition for Batteries: A Review
    Lee, Minji
    Ahmad, Waheed
    Kim, Dae Woong
    Kwon, Kyu Moon
    Kwon, Ha Yeon
    Jang, Han-Bin
    Noh, Seung-Won
    Kim, Dae-Ho
    Zaidi, Syed Jazib Abbas
    Park, Hwiyeol
    Lee, Heung Chan
    Basit, Muhammad Abdul
    Park, Tae Joo
    CHEMISTRY OF MATERIALS, 2022, 34 (08) : 3539 - 3587