Vertical phase separation structure for high‐performance organic thin‐film transistors: Mechanism, optimization strategy, and large‐area fabrication toward flexible …

X Yin, J Yang, H Wang - Advanced Functional Materials, 2022 - Wiley Online Library
Organic thin‐film transistors (OTFTs) exhibit great potential applications in flexible logic
circuits, sensors, nonvolatile memory, etc. The vertical phase separation (VPS) structure …

Diverse applications of MoO 3 for high performance organic photovoltaics: fundamentals, processes and optimization strategies

Y Gong, Y Dong, B Zhao, R Yu, S Hu… - Journal of Materials …, 2020 - pubs.rsc.org
The development of efficient and stable interface materials is an important part of the
research in organic photovoltaics (OPVs), which aims to realize higher efficiency, longer …

Achieving Fully Reversible Conversion in MoO3 for Lithium Ion Batteries by Rational Introduction of CoMoO4

W Wang, J Qin, Z Yin, M Cao - ACS nano, 2016 - ACS Publications
Electrode materials based on conversion reactions with lithium ions generally show much
higher energy density. One of the main challenges in the design of these electrode materials …

Conjugated‐Polymer Blends for Organic Photovoltaics: Rational Control of Vertical Stratification for High Performance

Y Yan, X Liu, T Wang - Advanced Materials, 2017 - Wiley Online Library
The photoactive layer of bulk‐heterojunction organic solar cells, in a thickness range of tens
to hundreds of nanometers, comprises phase‐separated electron donors and acceptors …

Printable MoOx Anode Interlayers for Organic Solar Cells

Q Kang, B Yang, Y Xu, B Xu, J Hou - Advanced Materials, 2018 - Wiley Online Library
Currently, solution‐processed MoOx anode interfacial layers (AILs) can only be fabricated
by the spin‐coating method in organic solar cells (OSCs), which severely limits their use in …

Vertical stratification engineering for organic bulk-heterojunction devices

L Huang, G Wang, W Zhou, B Fu, X Cheng, L Zhang… - ACS …, 2018 - ACS Publications
High-efficiency organic solar cells (OSCs) can be produced through optimization of
component molecular design, coupled with interfacial engineering and control of active layer …

Cyanide-metal framework derived porous MoO3-Fe2O3 hybrid micro-octahedrons as superior anode for lithium-ion batteries

Y Chen, W Zong, H Chen, Z Li, H Pang, A Yuan… - Chemical Engineering …, 2021 - Elsevier
A new porous MoO 3-Fe 2 O 3 hybrid micro-octahedrons were successfully fabricated via a
simple thermolysis of cyanide-metal framework precursor of Fe 2 [Mo (CN) 8]· xH 2 O. The …

Annealing-Insensitive, Alcohol-Processed MoOx Hole Transport Layer for Universally Enabling High-Performance Conventional and Inverted Organic Solar Cells

C Song, X Huang, T Zhan, L Ding, Y Li… - … Applied Materials & …, 2022 - ACS Publications
At present, most solution-processed molybdenum oxide (s-MoO x) hole transport layers
(HTLs) are still mainly used in conventional organic solar cells (OSCs) but unsuitable for …

CoMoO4-N-doped carbon hybrid nanoparticles loaded on a petroleum asphalt-based porous carbon for lithium storage

Y Zhu, Y Wang, C Gao, W Zhao, X Wang, M Wu - New Carbon Materials, 2020 - Elsevier
Ultrafine transition metal oxides have great potential for efficient lithium storage but some
key problems, such as a strong tendency to aggregate and poor electrical conductivity, need …

Over 100‐nm‐Thick MoOx Films with Superior Hole Collection and Transport Properties for Organic Solar Cells

B Yang, Y Chen, Y Cui, D Liu, B Xu… - Advanced Energy …, 2018 - Wiley Online Library
Herein, a novel and effective method to prepare n‐doped MoOx films with highly improved
conductivity is reported. The MoOx films are readily prepared by spin‐coating an aqueous …