Results 201 to 210 of about 3,663,593 (242)
Single‐cell mechanomics demonstrates that pharmacological perturbation changes cytoskeletal and cortical structure, suppressing cancer cell invasiveness. By integrating atomic force microscopy (AFM)‐based cortical measurements with stimulated emission depletion (STED)‐resolved adhesion and cytoskeletal organization, this approach identifies nanoscale ...
Minhee Ku +4 more
wiley +1 more source
Maximizing Nanoscale Disorder in Block Copolymers for Orientation‐Independent SERS Platform toward Non‐Invasive Diagnostics is a nature‐inspired strategy that engineers controlled randomness within block copolymer lamellae to achieve optical isotropy without compromising nanoscale periodicity.
Jin Man Kim +6 more
wiley +1 more source
Infrared metasurface‐guided waves (IR‐MGW) scattered by a time interface (TI) induced by rapid, localized free‐carrier generation can be efficiently rectified to generate strong, persistent magnetic fields. We develop a rigorous, theoretical model to study a time‐varying, dispersive medium and uncover the redistribution of the initial energy of the IR ...
Shivaksh Rawat +2 more
wiley +1 more source
Structural Colors from Modulated Topological Defects in Molecular Smectic Liquid Crystals
Rather than using dyes and pigments, nature produces the colors of some butterflies and beetles through optical interference phenomena. This study describes an original biomimetic strategy exploiting the spontaneous formation of modulated linear defects in thin films of 8CB, a common molecular liquid crystal.
Camille N. Mahyaoui +7 more
wiley +1 more source
Some of the next articles are maybe not open access.
Related searches:
Related searches:
Circularly Polarized Light Responsive Materials: Design Strategies and Applications
Advanced Materials, 2023Circularly polarized light (CPL) with the end of optical vector traveling along circumferential trajectory shows left‐ and right‐handedness, which transmits chiral information to materials via complicated CPL–matter interactions.
Pengyao Xing
exaly +2 more sources
Circularly polarized luminescent carbon dot nanomaterials of self-organized helical superstructures based on cellulose nanocrystals enable strong, right-handed, and multicolor tunable circularly polarized luminescence with extraordinary dissymmetry ...
Xiaojun Wang, Minjie Li, Yan Xu
exaly +2 more sources
Circularly Polarized Light‐driven Liquid Crystal Elastomer Actuators
Advanced Optical Materials, 2023Photo‐responsive liquid crystal elastomer (LCE) actuator is of paramount significance for emerging applications in soft robotics, biomimetic devices, and adaptive optical devices.
Dan Luo
exaly +2 more sources
ACS Applied Materials & Interfaces, 2023
Preparation of chiral materials from achiral helical polymers has aroused great interest among researchers. In this work, chiral small molecules were utilized to accomplish chiral induction toward racemic helical polyacetylene via intermolecular π-π ...
Biao Zhao, Jianping Deng
exaly +2 more sources
Preparation of chiral materials from achiral helical polymers has aroused great interest among researchers. In this work, chiral small molecules were utilized to accomplish chiral induction toward racemic helical polyacetylene via intermolecular π-π ...
Biao Zhao, Jianping Deng
exaly +2 more sources
Constructing Chiral Covalent‐Organic Frameworks for Circularly Polarized Light Detection
Advances in Materials, 2023The use of chiral covalent organic frameworks (COFs) as active elements in photodetectors to directly identify circularly polarized light (CPL) can meet the requirement of integration and miniaturization of the as‐fabricated devices.
Qianfeng Gu +13 more
semanticscholar +1 more source
Advanced Materials, 2023
Circularly polarized light detection has attracted growing attention because of its unique application in security surveillance and quantum optics.
Wei Qin
exaly +2 more sources
Circularly polarized light detection has attracted growing attention because of its unique application in security surveillance and quantum optics.
Wei Qin
exaly +2 more sources

