Versatile Self‐Assembled Hole Transport Monolayer Enables Facile Processing Organic Solar Cells over 18% Efficiency with Good Generality

W Wang, Z Lin, S Gao, W Zhu, X Song… - Advanced Functional …, 2023‏ - Wiley Online Library
Simplifying solution‐processing of bulk‐heterojunction (BHJ) organic solar cells (OSCs) via
efficient interfacial layers with good generality is in great demand for pushing their large …

Optimizing mechanical stretchability and photovoltaic performance in all-polymer solar cells from a two-donor polymer blend

M Li, K **an, W Zhao, D Sheng, C Liu, X Li, W Li… - Chemical Engineering …, 2023‏ - Elsevier
In recent years, the power conversion efficiency of all-polymer organic photovoltaic cells
(OPVs) has surpassed 19%, reaching a level suitable for commercial applications. To meet …

Poly (3, 4‐Ethylenedioxythiophene): Sulfamic Acid Modified Aramid Nanofibers: An Innovative Conductive Polymer With Enhanced Electromagnetic Interference …

J Zhou, Y Zhu, K Qian, M Miao, X Feng - Small, 2024‏ - Wiley Online Library
The development of alternative conductive polymers for the well‐known poly (3, 4‐
ethylenedioxythiophene): polystyrene sulfonate (PEDOT: PSS) is of great significance for …

Solution-processed polymer bilayer heterostructures as hole-transport layers for high-performance opaque and semitransparent organic solar cells

H Chen, Z Yin, Y Ma, D Cai, Q Zheng - Materials Today Energy, 2023‏ - Elsevier
Interfacial layer materials such as hole-transport layers (HTLs) are critical to realizing high-
performance organic solar cells (OSCs). However, most OSCs are relying on a prominent …

18.62%‐Efficiency Binary Organic Solar Cells with a PEDOT1:PSS2.80 Buffer Layer

J Zeng, X Fan, J Wang, J Li, J Chen… - Advanced Optical …, 2024‏ - Wiley Online Library
Binary organic solar cells (OSCs) having a controllable phase‐separated morphology of
active layers and simple solution manufacturing are desirable for organic photovoltaic …

[HTML][HTML] Systematic anode engineering enabling universal efficiency improvements in organic solar cells

KK Tsang, H Yu, JYL Lai, HM Ng, CH Kwok, W **ong… - Giant, 2024‏ - Elsevier
Anode modification and optimization is crucial towards improving performance of organic
solar cells (OSCs). PEDOT: PSS is the most common choice as a hole transport layer (HTL) …

Highly Efficient and Stable Organic Solar Cells Enabled by a PEDOT:PSS/HxMoO3 Hybrid Hole Transport Layer

F **, R Peng, Y Qiu, J Zhang, Z Ge - ACS Applied Energy …, 2023‏ - ACS Publications
The hole transport layer (HTL) is an essential factor to improve the charge carrier transport
and collection of organic solar cells (OSCs) and also has an important impact on the stability …

Tuning the Conductivity by Disorder and Electric Field Near the Metal–Insulator Transition

A Mohan, R Menon - The Journal of Physical Chemistry C, 2024‏ - ACS Publications
The electric field-dependent conductivity of poly (3, 4-ethylenedioxythiophene): poly (styrene-
sulfonate)[PEDOT: PSS], from metallic to insulator, is investigated in a temperature range of …

Optimization of graphene oxide/conducting polymer nanocomposites as electrodes for nonenzymatic glucose sensing. Part I: preparation, characterization and surface …

BK Saleh, SF Yacout, M Soliman… - Journal of …, 2024‏ - journals.sagepub.com
In this study, we Prepared a new composite of graphene oxide (GO), polyaniline (PANI) and
poly (3, 4-ethylenedioxythiophene) that can be used for non-enzymatic glucose sensing …

Open‐shell Poly (3, 4‐dioxythiophene) Radical for Highly Efficient Photothermal Conversion

Q Wei, J Huang, Q Meng, Z Zhang, S Gu… - Advanced …, 2024‏ - Wiley Online Library
Open‐shell organic radical semiconductor materials have received increasing attention in
recent years due to their distinctive properties compared to the traditional materials with …