Rainbow Photonic Crystals: Self‐Assembly of Carbohydrate Bottlebrushes Block Copolymers

H Hong Li M Muhammad Mumtaz (University of Grenoble Alpes CNRS CERMAV Grenoble 38000 France) T Takuya Isono (Faculty of Engineering Hokkaido University Sapporo 060‐8628 Japan) T Toshifumi Satoh (Faculty of Engineering Hokkaido University Sapporo 060‐8628 Japan) C Cheng‐Liang Liu (Department of Materials Science and Engineering National Taiwan University Taipei 10617 Taiwan) W Wen‐Chang Chen (Advanced Research Center for Green Materials Science and Technology National Taiwan University Taipei 10617 Taiwan) R Redouane Borsali (University of Grenoble Alpes CNRS CERMAV Grenoble 38000 France)

Abstract

Abstract Tunable and responsive photonic crystal systems are the subject of great research interest owing to their ability to actively respond to chemical, physical, biological, and other external stimuli. In this study, a new series of well‐defined and novel carbohydrate‐based bottlebrush copolymers are introduced, exhibiting narrow molecular weight (M n ) distributions in the range of 823.5 to 1455.0 kDa. These bottlebrushes self‐assemble into 1D photonic crystals (1D‐PCs), and their self‐assembly in lamellae structures is investigated using a wide range of techniques. The 1D‐PCs formed from different bottlebrushes display a full spectrum of colors, ranging from colorless to rainbow colors, including blue, green, orange, and red, effectively spanning the entire UV–vis range. Remarkably, a very fast (a few seconds) change in the color is obtained simply by different solvent, a consequence of the lamellae domain swelling. This demonstrates the impressive tunability, fast responsiveness, and reversibility of these systems. Furthermore, by mixing the bottlebrushes with small carbohydrates, their optical properties can be further modified, achieving a red shift in reflective colors from orange to red. This approach provides a flexible strategy for tailoring the optical characteristics of photonic crystals without the need for synthesizing new carbohydrate‐based bottlebrushes, thus offering a versatile platform for controlling their properties.

Article Details

Volume / Issue Vol. 38, Issue 17
Published March 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (7)

H

Hong Li

M

Muhammad Mumtaz

University of Grenoble Alpes CNRS CERMAV Grenoble 38000 France

T

Takuya Isono

Faculty of Engineering Hokkaido University Sapporo 060‐8628 Japan

T

Toshifumi Satoh

Faculty of Engineering Hokkaido University Sapporo 060‐8628 Japan

C

Cheng‐Liang Liu

Department of Materials Science and Engineering National Taiwan University Taipei 10617 Taiwan

W

Wen‐Chang Chen

Advanced Research Center for Green Materials Science and Technology National Taiwan University Taipei 10617 Taiwan

R

Redouane Borsali

University of Grenoble Alpes CNRS CERMAV Grenoble 38000 France