Supramolecular nanoarchitectonics for functional materials

被引:18
|
作者
Ariga, Katsuhiko [1 ,2 ]
Shrestha, Lok Kumar [1 ]
机构
[1] NIMS, Res Ctr Mat Nanoarchitecton MANA, WPI, 1-1 Namiki, Tsukuba, Ibaraki 3050044, Japan
[2] Univ Tokyo, Grad Sch Frontier Sci, Dept Adv Mat Sci, 5-1-5 Kashiwanoha, Kashiwa, Chiba 2778561, Japan
关键词
LIPID-WATER INTERFACE; MOLECULAR RECOGNITION; AIR-WATER; BUILDING-BLOCKS; NANOPOROUS CARBON; INTERMOLECULAR INTERACTION; COORDINATION POLYMER; DIRECT CARBONIZATION; FULLERENE CRYSTALS; TEMPLATE SYNTHESIS;
D O I
10.1063/1.5134530
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Nanoarchitectonics has been paid much attention as an emerging concept to architect functional materials from molecular and nanounits through the combination of nanotechnology-oriented strategies and supramolecular-chemistry-like methodologies. This perspective article aims to figure out important keys for materials nanoarchitectonics. In the initial part, recent trends in materials nanoarchitectonics upon supramolecular self-assembly are overviewed. The overview processes extract several key words including dynamic natures, dimensional controls, and interfacial processes according to the following sections: (i) preparation of assembled structures and conversion into nanostructured materials, (ii) dynamic structural transformation to hierarchic materials, and (iii) material preparation and functions with dynamic flows at interfacial media. Not limited to the material production, dynamic processes at the interface can be also connected with forefront functions such as tuning of molecular receptors and mechanical controls. This perspective article can conclude that fabrication of functional materials and controls of nanosystems would be well-considered on the basis of these three key terms.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Functional Materials Based on Supramolecular Coordination: Structure and Properties
    Li, Hui
    2013 10TH INTERNATIONAL BHURBAN CONFERENCE ON APPLIED SCIENCES AND TECHNOLOGY (IBCAST), 2013, : 1 - 5
  • [32] Nanoarchitectonics in Materials Science: Method for Everything in Materials Science
    Ariga, Katsuhiko
    Fakhrullin, Rawil
    MATERIALS, 2023, 16 (19)
  • [33] Materials nanoarchitectonics for environmental remediation and sensing
    Ariga, Katsuhiko
    Ishihara, Shinsuke
    Abe, Hideki
    Li, Mao
    Hill, Jonathan P.
    JOURNAL OF MATERIALS CHEMISTRY, 2012, 22 (06) : 2369 - 2377
  • [34] Materials nanoarchitectonics: a conspectus for polymer scientists
    Kujawa, Piotr
    Winnik, Francoise M.
    POLYMER INTERNATIONAL, 2014, 63 (03) : 377 - 380
  • [35] Nanoarchitectonics of supramolecular porphyrins based on a bis(porphyrin) cleft molecule
    Hirao, Takehiro
    Haino, Takeharu
    JOURNAL OF PORPHYRINS AND PHTHALOCYANINES, 2023, 27 (07N10) : 966 - 979
  • [36] A Special Section on Materials Innovation with Nanoarchitectonics
    Ariga, Katsuhiko
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2020, 20 (05) : 2651 - 2651
  • [37] Innovation in Nanomedicine through Materials Nanoarchitectonics
    Kujawa, Piotr
    Winnik, Francoise M.
    LANGMUIR, 2013, 29 (24) : 7354 - 7361
  • [38] Micro Spectrometers Based on Materials Nanoarchitectonics
    Qiu, Yanyan
    Zhou, Xingting
    Tang, Xin
    Hao, Qun
    Chen, Menglu
    MATERIALS, 2023, 16 (06)
  • [39] Nanoarchitectonics: a navigator from materials to life
    Ariga, Katsuhiko
    MATERIALS CHEMISTRY FRONTIERS, 2017, 1 (02) : 208 - 211
  • [40] Nanoarchitectonics: a new materials horizon for nanotechnology
    Ariga, Katsuhiko
    Ji, Qingmin
    Nakanishi, Waka
    Hill, Jonathan P.
    Aono, Masakazu
    MATERIALS HORIZONS, 2015, 2 (04) : 406 - 413