Flexible transparent electrochemical energy conversion and storage devices (FT–EECSDs), with endurable mechanical flexibility, outstanding optical transmittance, excellent electrochemical performance, and additional intelligent functions, are considered as preferable energy supplies for future self-powered flexible electronic systems.
This work opens up new opportunities for the next-generation applications of flexible transparent energy storage devices.
To achieve flexible and transparent device, it is required that all of the components are flexible and transparent. Since the conventional components are opaque and not deformable enough, it is highly desirable that all the components should be replaced by the deformable and transparent parts.
The manufacturing techniques of generally classified three types of flexible transparent electrodes are systematically summarized. Emphasis is given to the recent developments in the transparent solid-state electrolyte, flexible transparent energy conversion, and storage devices.
Moreover, fabricated on a transparent indium tin oxide electrode, the PZO heterostructure exhibits excellent energy performance and an optical transmittance of up to 70–80%. Through this study, a paradigm for reliable flexible transparent fast charging-discharging energy storage element is developed. 1. Introduction
Emphasis is given to the recent developments in the transparent solid-state electrolyte, flexible transparent energy conversion, and storage devices. The standard evaluation methods and reasonable evaluation parameters to evaluate the flexibility and transparency of FT–EECSDs are highlighted.
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With the rapid development of flexible electronic devices (especially flexible LCD/OLED), flexible transparent electrodes (FTEs) with high light transmittance, high electrical …
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The controlled assembly of nanomaterials has demonstrated significant potential in advancing technological devices. However, achieving highly efficient and low-loss assembly …
Flexible transparent electrochemical energy conversion and storage devices (FT–EECSDs), with endurable mechanical flexibility, outstanding optical transmittance, excellent...
Flexible organic light-emitting diodes (FOLEDs) have promising potential for future wearable applications because of their exceptional mechanical flexibility. Silver nanowire …
Multifunctional hydrogels are highly desirable for soft devices. However, their complex functional constituents pose safe and environmental concerns in the application. …
A transparent and flexible antenna can be easily integrated with displays, windows, solar cells and optoelectronic modules, thus, reducing the space in the integrated circuits.
Large-Area, Flexible, Transparent, and Long-Lived Polymer-Based Phosphorescence Films Journal of the American Chemical Society ( IF 14.4) Pub Date : 2021-08-19, DOI: …
In this work, we successfully developed flexible, transparent and highly conductive film electrodes based on a conducting polymer, poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS).
Flexible and transparent energy storage devices can be implemented in two directions: New structure design and new material exploration. Herein, the development of flexible and …
Mechanically durable transparent electrodes are essential for achieving long-term stability in flexible optoelectronic devices. Furthermore, they are crucial for applications in …
Although flexible, transparent, and conductive materials are increasingly required for electromagnetic interference (EMI) shielding applications in foldable and wearable …
The first random metal NW network was made of solution processed Ag NWs to replace nanoimprinted metal grid and CNT films as the transparent electrodes [16], [18], [19]. …
A highly flexible, transparent conducting oxide- and Pt-free photo-rechargeable electric energy storage system is demonstrated by integrating a dye-sensitized solar cell and a supercapacitor …
A new flexible, transparent solar cell developed at MIT brings that future one step closer. The device combines low-cost organic (carbon-containing) materials with electrodes of graphene, a flexible, transparent …
Flexible Transparent LED Display uses a specific bare chip, which fixes the component on a high-transparency PCB sheet. The weight per square is between 1-3kg, and its lightness can reduce …
Flexible transparent conductive electrodes (TCEs) have recently attracted a great deal of attention owing to rapid advances in flexible electronic devices, such as flexible …
Antiferroelectric materials for dielectric energy storage with fast charging-discharging rate is an important research direction. In this study, to build a platform for the …
Until now, the most used electrode materials in TASs are conducting oxide electrodes, like indium tin oxide (ITO) and ZnO. 17,18,22, 23 For example, Yang et al. …
A flexible, transparent iontronic film is introduced as a thin‐film capacitive sensing material for emerging wearable and health‐monitoring applications. Utilizing the capacitive interface at the …
Chen, K.-S. et al. Semi-transparent polymer solar cells with 6% PCE, 25% average visible transmittance and a color rendering index close to 100 for power generating …
To make the currently used rigid and heavy batteries flexible, transparent, and degradable, the whole battery architecture including active materials, current collectors, electrolyte/separator ...
Flexible and fully transparent thin film transistors (TFT) were fabricated via room temperature processes. The fabricated TFT on the PEN exhibited excellent performance, …
nanomaterials Article Flexible Transparent Heat Mirror for Thermal Applications Shimin Li 1,2, Qianqian Xu 1,2, Ziji Zhou 1,2, Wenchao Zhao 1,2, Xiaowen Li 1, Zhengji Wen 1,2, Yao Yao 1, …
Here, we demonstrate the development and applications of flexible and transparent lithium-ion battery and super capacitor. In particular, carbon nanomaterials are widely used in flexible and transparent electronic …
Here, we present a transparent tactile e-skin based on single-layer graphene, coplanar interdigitated capacitive (IDC) electrodes. The interdigitated structure of presented …
ASCA ®-Technologie basiert auf organischer Photovoltaik (OPV).Die ASCA ®-OPV ist das Ergebnis jahrelanger Forschung und Entwicklung und stellt eine wegweisende Lösung für die …
The progressive development of flexible transparent portable electronic devices is in urgent need of matching power sources. Flexible transparent supercapacitors (FTSCs) are the core …
Perovskite resistive random-access memory (RRAM) is a promising candidate for next-generation logic, adaptive and nonvolatile memory devices, because of its high ON/OFF ratio, low-cost fabrication, and good photoelectric regulation …