Materials Nanoarchitectonics for Advanced Devices DOI Open Access
Katsuhiko Ariga

Materials, Год журнала: 2024, Номер 17(23), С. 5918 - 5918

Опубликована: Дек. 3, 2024

Advances in nanotechnology have made it possible to observe and evaluate structures down the atomic molecular level. The next step development of functional materials is apply knowledge sciences. This role nanoarchitectonics, which a concept post-nanotechnology. Nanoarchitectonics defined as methodology create using nanounits such atoms, molecules, nanomaterials building blocks. very general not limited or applications, thus nanoarchitecture applied many fields. In particular, evolution from nanoarchitecture, useful consider contribution device applications. There may be solution widely recognized problem integrating top-down bottom-up approaches design systems. With this mind, review discusses examples nanoarchitectonics developments advanced devices. Some recent are introduced through broadly dividing them into organic inorganic nanoarchitectonics. Examples include variety control structural elements, π-conjugated structures, chemical complex ligands, steric hindrance effects, stacking, isomerization color changes due external stimuli, selective redox reactions, doping semiconductors by electron transfer reactions. Supramolecular processes association intercalation molecules also important controlling properties. often allows for size, dimension, shape, their associated physical properties can controlled. addition, there specific groups that suitable practical use, nanoparticles graphene. Therefore, has more aspect. Based on these aspects, finally considers future further

Язык: Английский

Layer-by-Layer Nanoarchitectonics: A Method for Everything in Layered Structures DOI Open Access
Katsuhiko Ariga

Materials, Год журнала: 2025, Номер 18(3), С. 654 - 654

Опубликована: Фев. 1, 2025

The development of functional materials and the use nanotechnology are ongoing projects. These fields closely linked, but there is a need to combine them more actively. Nanoarchitectonics, concept that comes after nanotechnology, ready do this. Among related research efforts, into creating through formation thin layers on surfaces, molecular membranes, multilayer structures these have lot implications. Layered especially important as key part nanoarchitectonics. diversity components used in layer-by-layer (LbL) assemblies notable feature. Examples LbL introduced this review article include quantum dots, nanoparticles, nanocrystals, nanowires, nanotubes, g-C3N4, graphene oxide, MXene, nanosheets, zeolites, nanoporous materials, sol–gel layered double hydroxides, metal–organic frameworks, covalent organic conducting polymers, dyes, DNAs, polysaccharides, nanocelluloses, peptides, proteins, lipid bilayers, photosystems, viruses, living cells, tissues. examples assembly show how useful versatile it is. Finally, will consider future challenges

Язык: Английский

Процитировано

3

Mechanism of carbon nanotube growth by Fe catalysts in a one-step process DOI

Xinyue Zhao,

Xijun Zhang, Chenyu Gao

и другие.

Applied Physics A, Год журнала: 2025, Номер 131(3)

Опубликована: Фев. 15, 2025

Язык: Английский

Процитировано

0

Influence of metal ion doping for the electrochemical performance of NiCo layered double hydroxide nanostructures DOI

Zhonghui Han,

Kang Guo, Jianning Ding

и другие.

Journal of Power Sources, Год журнала: 2024, Номер 621, С. 235310 - 235310

Опубликована: Авг. 25, 2024

Язык: Английский

Процитировано

3

Liquid–Liquid and Liquid–Solid Interfacial Nanoarchitectonics DOI Creative Commons
Katsuhiko Ariga

Molecules, Год журнала: 2024, Номер 29(13), С. 3168 - 3168

Опубликована: Июль 3, 2024

Nanoscale science is becoming increasingly important and prominent, further development will necessitate integration with other material chemistries. In words, it involves the construction of a methodology to build up materials based on nanoscale knowledge. This also beginning concept post-nanotechnology. role belongs nanoarchitectonics, which has been rapidly developing in recent years. However, scope application nanoarchitectonics wide, somewhat difficult compile everything. Therefore, this review article introduce concepts liquid interface, are keywords for organization functional systems biological systems. The target interfaces liquid-liquid liquid-solid so on. Recent examples summarized under categories molecular assembly, metal-organic framework covalent organic framework, living cell. addition, latest research interfacial semiconductor film discussed. final conclusive section summarizes these features discusses necessary components nanoarchitectonics.

Язык: Английский

Процитировано

2

Materials Nanoarchitectonics for Advanced Devices DOI Open Access
Katsuhiko Ariga

Materials, Год журнала: 2024, Номер 17(23), С. 5918 - 5918

Опубликована: Дек. 3, 2024

Advances in nanotechnology have made it possible to observe and evaluate structures down the atomic molecular level. The next step development of functional materials is apply knowledge sciences. This role nanoarchitectonics, which a concept post-nanotechnology. Nanoarchitectonics defined as methodology create using nanounits such atoms, molecules, nanomaterials building blocks. very general not limited or applications, thus nanoarchitecture applied many fields. In particular, evolution from nanoarchitecture, useful consider contribution device applications. There may be solution widely recognized problem integrating top-down bottom-up approaches design systems. With this mind, review discusses examples nanoarchitectonics developments advanced devices. Some recent are introduced through broadly dividing them into organic inorganic nanoarchitectonics. Examples include variety control structural elements, π-conjugated structures, chemical complex ligands, steric hindrance effects, stacking, isomerization color changes due external stimuli, selective redox reactions, doping semiconductors by electron transfer reactions. Supramolecular processes association intercalation molecules also important controlling properties. often allows for size, dimension, shape, their associated physical properties can controlled. addition, there specific groups that suitable practical use, nanoparticles graphene. Therefore, has more aspect. Based on these aspects, finally considers future further

Язык: Английский

Процитировано

1