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Energy Storage Materials | Journal | ScienceDirect by Elsevier

Energy Storage Materials is an international multidisciplinary journal for communicating scientific and technological advances in the field of materials and their devices for advanced energy

Azopyridine Polymers in Organic Phase Change Materials for High

1 天前· Azo-compounds molecules and phase change materials offer potential applications for sustainable energy systems through the storage and controllable release photochemical and

Self-luminous wood composite for both thermal and light energy storage

Request PDF | On Feb 1, 2019, Haiyue Yang and others published Self-luminous wood composite for both thermal and light energy storage | Find, read and cite all the research you

Study on the mechanics and functionalities of self-luminous

Request PDF | On Jul 1, 2023, Wentong Wang and others published Study on the mechanics and functionalities of self-luminous cement-based materials with energy storage and slow release

Shape-stabilized sustainable porous ethyl cellulose embedded

2.1 Materials. Ethyl cellulose (EC, M n =19000 g/mol; the degree of ethyl substitution is 2.3) was received from Aladdin Reagent Co., Ltd. China. Polyethylene glycol (PEG) with a number

Penso Power & Luminous Energy get green light for

The 350MW Hams Hall site follows Penso Power''s 100MW Minety site going live in 2021. Image: Penso Power. Welbar Energy Storage joint venture – made up of Penso Power and Luminous Energy – has secured

Dulcitol/Starch Systems as Shape-Stabilized Phase Change

1 天前· In recent years, there has been an increasing interest in phase change materials (PCM) based on dulcitol and other sugar alcohols. These materials have almost twice as large latent

Metal-Organic Framework-based Phase Change Materials for Thermal Energy

To make MOFs serve as promising supporting materials for the encapsulation of PCMs with superior thermal energy storage capability, enlarging the pore size of MOFs is

Self-luminous, shape-stabilized porous ethyl cellulose phase

Thermal energy storage (TES) systems are critical for sustainable development, especially in terms of energy saving and eliminating supply-demand mis-matches. Phase change materials

6 FAQs about [Energy storage and luminous materials]

Can a self-luminous wood composite be used for thermal and light energy storage?

Yang et al. ( 2019) fabricated a self-luminous wood composite for thermal and light energy storage via impregnating a PCM/long afterglow luminescence (LAL) combination into delignified wood. However, since LAL materials applied in PCMs is very rare, thermal energy and light energy storage still have some knowledge gaps.

What is energy storage materials?

Energy Storage Materials is an international multidisciplinary journal for communicating scientific and technological advances in the field of (such as in metal-O2 battery). It publishes comprehensive research articles including full papers and short communications, as well as topical feature articles/reviews by leading experts in the field.

How does self luminous wood composite reduce energy consumption?

In addition, self-luminous wood composite has long afterglow time (about 11 h), which can absorb and store visible and ultraviolet light, and release green light in the dark ( Fig. 1 b). The self-luminous wood composite can store both thermal energy and light energy, thus reduce energy consumption.

How do luminescent materials work?

Luminescent materials are capable of transforming certain types of energy into electromagnetic radiation, which means that in response to a specific stimulus, these materials emit light typically within the ultraviolet (UV) to the infrared (IR) spectral region [1, 2].

What are persistent luminescent materials used for?

Development of persistent luminescent materials has drawn continuous attention because of their potential applications in the fields of emergency lighting signs, dials and security displays, night-vision signage, in vivo bio-imaging, dosimetry and optical data storage 1, 2, 3.

Can luminous nanoparticles be used to fabricate luminous wood composites?

Gan et al. ( 2017) used PMMA and Fe 2 O 3 @YVO 4 :Eu 3+ to fabricate a novel luminous and translucent wood composite by introducing luminous nanoparticles into a wood template. However, only a few researchers have introduced luminous materials into the PCMs to fabricate composite PCMs for light energy storage usage.

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