Liquid interfacial nanoarchitectonics: Molecular machines, organic semiconductors, nanocarbons, stem cells, and others DOI Creative Commons
Katsuhiko Ariga

Current Opinion in Colloid & Interface Science, Journal Year: 2022, Volume and Issue: 63, P. 101656 - 101656

Published: Nov. 3, 2022

Language: Английский

Nanoarchitectonics: the method for everything in materials science DOI Open Access
Katsuhiko Ariga

Bulletin of the Chemical Society of Japan, Journal Year: 2023, Volume and Issue: 97(1)

Published: Dec. 1, 2023

Abstract Nanotechnology has revealed the science of nanoscale. The global challenge that will follow is to build functional materials with knowledge nanoscale phenomena. This task carried out by nanoarchitectonics as a postnanotechnology concept. goal material systems architecting atoms, molecules, and nanomaterials building blocks. Fundamentally, all are made atoms molecules. Therefore, nanoarchitectonics, which architects from can be universal way create materials. It may said method for everything in science. From basic units, living cells, complex systems, components nanoarchitectonics. paper presents recent examples research at various size levels, atomic cellular level, specifically, (i) atomistic (ii) molecular (iii) supramolecular (iv) inorganic (v) biomolecular (vi) cell-mimic (vii) cell-based possibility science, an integrative then explored.

Language: Английский

Citations

116

Pore-engineered nanoarchitectonics for cancer therapy DOI Creative Commons
Linawati Sutrisno, Katsuhiko Ariga

NPG Asia Materials, Journal Year: 2023, Volume and Issue: 15(1)

Published: March 31, 2023

Abstract Nanoarchitectonics describes the integration of nanotechnology with other fields as a postnanotechnology concept that elevates it to material science. Based on this fundamental principle, we address pore-engineered nanoarchitectonics application targets for cancer therapy by combining basic descriptions and exemplifying applications in review. The initial two sections briefly summarize basics according classification based (i) porosity (ii) composition. Afterward, main application-oriented section—designing mesoporous therapy—is presented. Various types drug delivery systems, including nanoparticles nanocarriers, endogenous stimuli-responsive delivery, exogenous targeted are described. Importantly, clinical translation materials is further discussed. Mesoporous unique offer network cavities vehicles nanocarriers. Regarding developments allow be broadly used settings, there several challenges should solved their application. From perspective, tremendous processes development materials.

Language: Английский

Citations

44

Layer-by-layer designer nanoarchitectonics for physical and chemical communications in functional materials DOI Creative Commons
Katsuhiko Ariga, Jingwen Song, Kohsaku Kawakami

et al.

Chemical Communications, Journal Year: 2024, Volume and Issue: 60(16), P. 2152 - 2167

Published: Jan. 1, 2024

In nanoarchitectonics approaches, rational physical and chemical communications will lead to the development of more advanced functional materials. Layer-by-layer assembly can be a powerful tool for this purpose, as exemplified in feature paper.

Language: Английский

Citations

27

Localized assembly in biological activity: Origin of life and future of nanoarchitectonics DOI
Jingwen Song, Kohsaku Kawakami, Katsuhiko Ariga

et al.

Advances in Colloid and Interface Science, Journal Year: 2025, Volume and Issue: 339, P. 103420 - 103420

Published: Feb. 3, 2025

Language: Английский

Citations

4

Nanoarchitectonics Intelligence with atomic switch and neuromorphic network system DOI Creative Commons
Takashi Tsuchiya, Tomonobu Nakayama, Katsuhiko Ariga

et al.

Applied Physics Express, Journal Year: 2022, Volume and Issue: 15(10), P. 100101 - 100101

Published: Sept. 15, 2022

Abstract An emerging concept of “nanoarchitectonics” has been proposed as a way to apply the progress nanotechnology materials science. In introductory parts, we briefly explain in understanding through nanotechnology, overview nanoarchitectonics, effects nanoarchitectonics on development functional and devices, outline intelligence main subject this review paper. following sections, process constructing intelligent devices based atomic switches, which behavior atoms determines device functions, by integrating them with nanoarchitectonics. The contents are categorized into (i) basic operation switch, (ii) artificial synapse, (iii) neuromorphic network system, (iv) hetero-signal conversion, (v) decision making device, (vi) switch practical uses. switches were originally relatively simple ON/OFF binary-type electrical but their potential multi-level resistive memory for synapses applications. Furthermore, network-structured complex have regression pathways structure resemble cranial neural circuits. For example, A decision-making that reproduces human thinking principle different from brain circuits was developed using proton-conductive electrochemical cells. progressively usages including application harsh environments (e.g. high temperature, low space). Efforts toward information processing applications tell remarkable success stories linking control motion brain-like nanoarchitecture regulations.

Language: Английский

Citations

59

Regulation of stem cell fate and function by using bioactive materials with nanoarchitectonics for regenerative medicine DOI Creative Commons
Wei Hu,

Jiaming Shi,

Wenyan Lv

et al.

Science and Technology of Advanced Materials, Journal Year: 2022, Volume and Issue: 23(1), P. 393 - 412

Published: June 6, 2022

Nanoarchitectonics has emerged as a post-nanotechnology concept. As one of the applications nanoarchitectonics, this review paper discusses control stem cell fate and function an important issue. For hybrid nanoarchitectonics involving living cells, it is crucial to understand how biomaterials their nanoarchitected structures regulate behaviours fates cells. In review, for regulation are firstly discussed. Besides multipotent differentiation, immunomodulation biological mesenchymal cells (MSCs). MSCs can modulate immune treat multiple immune- inflammation-mediated diseases. The following sections summarize recent advances immunomodulatory functions by biophysical signals. third part, we discussed direct self-organization pluripotent organoid. Bioactive materials constructed which mimic cues in vivo microenvironment such elasticity, viscoelasticity, biodegradation, fluidity, topography, geometry, etc. Stem interpret these different cytoskeletal forces. forces lead substantial transcription protein expression, affect function. Regulations could not be utilized only tissue repair regenerative medicine but also potentially production advanced systems. Materials with integration related substances would have high impacts science technology materials.

Language: Английский

Citations

49

A review on functional nanoarchitectonics nanocomposites based on octahedral metal atom clusters (Nb 6 , Mo 6 , Ta 6 , W 6 , Re 6 ): inorganic 0D and 2D powders and films DOI
Thi Kim Ngân Nguyên, Clément Lebastard,

Maxence Wilmet

et al.

Science and Technology of Advanced Materials, Journal Year: 2022, Volume and Issue: 23(1), P. 547 - 578

Published: Sept. 1, 2022

This review is dedicated to various functional nanoarchitectonic nanocomposites based on molecular octahedral metal atom clusters (Nb6, Mo6, Ta6, W6, Re6). Powder and film with two-dimensional, one-dimensional zero-dimensional morphologies are presented, as well matrices from organic polymers inorganic layered oxides. The high potential synergetic effects of these for biotechnology applications, photovoltaic, solar control, catalytic, photonic sensor applications demonstrated. also provides a basic level understanding how characterized processed using different techniques methods. main objective this would be provide guiding significance the design new high-performance transition clusters.

Language: Английский

Citations

49

Engineering dynamic and interactive biomaterials using material nanoarchitectonics for modulation of cellular behaviors DOI Creative Commons
Xiaofang Jia,

Jieman Chen,

Wenyan Lv

et al.

Cell Reports Physical Science, Journal Year: 2023, Volume and Issue: 4(2), P. 101251 - 101251

Published: Jan. 24, 2023

Biophysical cues of native extracellular matrix (ECM) can affect cellular behavior. Although static properties biomaterials have been widely explored, there is a growing interest in dynamic and interactive for the modulation behavior fate. Native ECM highly with mutual feedback between cells, which plays key role regulation development, regenerative processes, disease progression. Dynamic based on material nanoarchitectonics emulate dynamics living systems. This review introduces concept summarizes recent advances from stimuli-responsive materials toward adaptable next generation materials. The opportunities challenges this field are also discussed.

Language: Английский

Citations

41

Materials nanoarchitectonics in a two-dimensional world within a nanoscale distance from the liquid phase DOI
Katsuhiko Ariga

Nanoscale, Journal Year: 2022, Volume and Issue: 14(30), P. 10610 - 10629

Published: Jan. 1, 2022

This short review article describes recent approaches to materials nanoarchitectonics in a liquid-based two-dimensional world, i.e. , interfacial regions within nanoscale distance from the liquid phase.

Language: Английский

Citations

40

Chemistry of Materials Nanoarchitectonics for Two-Dimensional Films: Langmuir–Blodgett, Layer-by-Layer Assembly, and Newcomers DOI
Katsuhiko Ariga

Chemistry of Materials, Journal Year: 2023, Volume and Issue: 35(14), P. 5233 - 5254

Published: July 3, 2023

Considering the creation of functional materials based on nanoscience, an emerging concept nanoarchitectonics has been proposed to combine nanotechnology with other material-related fields. Nanoarchitectonics aims establish universal methodologies architect using nanounits atoms, molecules, and nanomaterials. The ultimate goal is construct high-performance materials, as seen for those in biological systems. Functional molecules systems are rationally integrated, mostly basis various membrane structures. With this mind, review discusses two-dimensional films. As major methods, Langmuir–Blodgett (LB) method layer-by-layer (LbL) assembly first focused. standard LB technical extensions initially discussed, then LbL certain advances described. After that, some examples advanced techniques presented. Although have long histories (more than 100 years 30 LbL), their developments still active out common sense conditions introducing Especially, paper demonstrates that out-of-box thinking will lead development new thin film nanoarchitectonics.

Language: Английский

Citations

38