Advanced polyimide materials: Syntheses, physical properties and applications
DJ Liaw, KL Wang, YC Huang, KR Lee, JY Lai… - Progress in Polymer …, 2012 - Elsevier
Polyimides rank among the most heat-resistant polymers and are widely used in high
temperature plastics, adhesives, dielectrics, photoresists, nonlinear optical materials …
temperature plastics, adhesives, dielectrics, photoresists, nonlinear optical materials …
Synthesis of light-emitting conjugated polymers for applications in electroluminescent devices
The award of the Nobel Prize for Chemistry in 2000 to Professors Alan Heeger, Alan
MacDiarmid, and Hideki Shirakawa for their discovery that “doped” polyacetylene can …
MacDiarmid, and Hideki Shirakawa for their discovery that “doped” polyacetylene can …
[PDF][PDF] Photocontrollable liquid‐crystalline actuators
H Yu, T Ikeda - Advanced Materials, 2011 - academia.edu
The history of human civilization is accompanied by the development of novel materials,
from the period of natural stone, the bronze and iron age, to the modern times of synthetic …
from the period of natural stone, the bronze and iron age, to the modern times of synthetic …
Polycarbazoles: 25 years of progress
Carbazole‐based oligomeric and polymeric materials have been studied for almost 25 years
for their unique electrical, electrochemical and optical properties. Interestingly, carbazole …
for their unique electrical, electrochemical and optical properties. Interestingly, carbazole …
Creation of carbazole-based fluorescent porous polymers for recognition and detection of various pesticides in water
B Zhang, B Li, Z Wang - ACS sensors, 2020 - ACS Publications
The development of sensitive, fast, and portable methods for detecting the residual toxic
pesticides is essentially important because of the increasing concerns for public health and …
pesticides is essentially important because of the increasing concerns for public health and …
Chromophore-labeled quinoxaline derivatives as efficient electroluminescent materials
KR Justin Thomas, M Velusamy, JT Lin… - Chemistry of …, 2005 - ACS Publications
Electroluminescent materials comprising quinoxaline, triarylamine, and fluorophores such
as carbazole, pyrene, and fluorene were prepared by using a key step involving a Pd …
as carbazole, pyrene, and fluorene were prepared by using a key step involving a Pd …
Platinum-functionalized random copolymers for use in solution-processible, efficient, near-white organic light-emitting diodes
PT Furuta, L Deng, S Garon… - Journal of the …, 2004 - ACS Publications
A near-white light-emitting polymer, consisting of hole transport (HT), electron transport (ET),
and phosphorescent Pt functionalities, was prepared and utilized as the emissive layer in …
and phosphorescent Pt functionalities, was prepared and utilized as the emissive layer in …
Solar‐Energy Production and Energy‐Efficient Lighting: Photovoltaic Devices and White‐Light‐Emitting Diodes Using Poly (2, 7‐fluorene), Poly (2, 7‐carbazole), and …
World energy needs grow each year. To address global warming and climate changes the
search for renewable energy sources with limited greenhouse gas emissions and the …
search for renewable energy sources with limited greenhouse gas emissions and the …
Simple synthesis and molecular engineering of low-cost and star-shaped carbazole-based hole transporting materials for highly efficient perovskite solar cells
Perovskite solar cells (PrSCs) have emerged as a very promising technology in the field of
photovoltaics by demonstrating power conversion efficiencies (PCEs) soaring from 3.9% to …
photovoltaics by demonstrating power conversion efficiencies (PCEs) soaring from 3.9% to …
The first single polymer with simultaneous blue, green, and red emission for white electroluminescence
J Liu, QG Zhou, YX Cheng, YH Geng… - Advanced …, 2005 - Wiley Online Library
A light‐emitting polymer with simultaneous blue (λ max= 445 nm), green (λ max= 515 nm),
and red light (λ max= 624 nm) emission for bias‐independent white electroluminescence is …
and red light (λ max= 624 nm) emission for bias‐independent white electroluminescence is …