strontium in new energy storage
Sorption based long-term thermal energy storage with strontium …
Establishment of solid–gas sorption cycle for thermochemical heat storage. The chemical reaction for SrCl 2 /NH 3 working pair can be given by: (2) SrCl 2 ⋅ 8 NH 3 + 7 Δ H ⇔ SrCl 2 ⋅ NH 3 + 7 NH 3. The operating principle for solid–gas sorption cycle for thermochemical sorption heat storage system is shown in Fig. 1.
Enhanced energy storage properties on calcium modified strontium …
In this study, calcium modified strontium barium niobate (CaxSr0.75−xBa0.25Nb2O6, CSBN-x, 0 ≤ x ≤ 0.20) lead-free ferroelectric relaxor ceramics were prepared by conventional solid-state reaction technique and their crystal structure, morphology, dielectric, ferroelectric and energy storage properties were studied …
A new strontium based reactive carbonate composite for thermochemical energy storage …
A new reactive carbonate composite (RCC) based on SrCO 3 is proposed as a material with high energy density for thermochemical energy storage. SrCO 3 –SrSiO 3 can promote the thermodynamic destabilisation of SrCO 3, making its operating temperature (700 °C) more suitable for concentrated solar thermal power applications.
Enhanced energy storage density and discharge efficiency in the strontium …
DOI: 10.1016/J.JALLCOM.2016.06.024 Corpus ID: 138454093 Enhanced energy storage density and discharge efficiency in the strontium sodium niobate-based glass-ceramics @article{Wang2016EnhancedES, title={Enhanced energy storage density and discharge efficiency in the strontium sodium niobate-based glass-ceramics}, …
Significantly enhanced energy‐storage density in the strontium …
Energy-storage density of 7.73 ± 0.26 J/cm3 is significantly improved by two-step crystallization process and is about 2.9 times of 2.63 ± 0.17 J/cm3 by one-step crystallization process. This result is attributed to the homogeneous nucleation improving the microstructures of glass-ceramics.
Thermochemical energy storage in strontium-doped calcium …
The temperature and specific energy limitations of current-day molten nitrate salts have driven research and development to explore alternative thermal storage media including higher-temperature chloride salts (Vignarooban et al., 2015), inert solid particles (Khare et al., 2013, Siegel et al., 2014), and thermochemical energy storage of …
[PDF] A new strontium bromide MOF composite with improved performance for solar energy storage …
DOI: 10.1016/J.EST.2019.100881 Corpus ID: 202225639 A new strontium bromide MOF composite with improved performance for solar energy storage application @article{DAns2019ANS, title={A new strontium bromide MOF composite with improved performance for solar energy storage application}, author={Pierre D''Ans and Emilie …
Combining high energy efficiency and fast charge-discharge capability in calcium strontium titanate-based linear dielectric ceramic for energy-storage
DOI: 10.1016/j.ceramint.2020.01.174 Corpus ID: 213620374 Combining high energy efficiency and fast charge-discharge capability in calcium strontium titanate-based linear dielectric ceramic for energy-storage @article{Wang2020CombiningHE, title={Combining ...
Improved Energy Storage Density in Barium Strontium Titanate by Addition …
The energy storage density of a Ba 0.4 Sr 0.6 TiO 3 ceramic with the addition of 5–20 vol% glass was investigated. The results show that the improvement of the energy density in glass-added Ba 0.4 Sr 0.6 TiO 3 samples arises due to two factors: one is that the breakdown strength is notably improved due to the decrease of the porosity and …
Structure, dielectric properties and energy storage performance of barium strontium …
Structure, dielectric properties and energy storage performance of barium strontium titanate thin films prepared by spin-coating technique Abstract: Ba 0.4 Sr 0.6 TiO 3 (BST) thin films were prepared by spin-coating technique and deposited on either Pt/TiO 2 /SiO 2 /Si (Pt/Si) substrate or silicon buffered by a lanthanum nickel oxide buffer layer (LNO/Si).
Ultrahigh recoverable energy storage density and efficiency in barium strontium titanate-based lead-free relaxor ferroelectric ceramics …
Ultrahigh recoverable energy storage density and efficiency in barium strontium titanate-based lead-free relaxor ferroelectric ceramics November 2018 Applied Physics Letters 113(20):203902
Enhanced energy storage density and discharge efficiency in potassium sodium niobite-based ceramics prepared using a new …
DOI: 10.1016/j.jeurceramsoc.2020.01.050 Corpus ID: 213890744 Enhanced energy storage density and discharge efficiency in potassium sodium niobite-based ceramics prepared using a new scheme Herein, the low cost (0.6 − x )BiFeO_3–0.4SrTiO_3– x Bi(Zn_0 ...
[2306.10887] Ion Intercalation in Lanthanum Strontium Ferrite for Aqueous Electrochemical Energy Storage …
Ion intercalation of perovskite oxides in liquid electrolytes is a very promising method for controlling their functional properties while storing charge, which opens the potential application in different energy and information technologies. Although the role of defect chemistry in the oxygen intercalation in a gaseous environment is well …
A new strontium based reactive carbonate composite for thermochemical energy storage …
DOI: 10.1039/d1ta04363c Corpus ID: 238911160 A new strontium based reactive carbonate composite for thermochemical energy storage @article{Vieira2021ANS, title={A new strontium based reactive carbonate composite for thermochemical energy storage}, author={Adriana P. Vieira and Kyran Williamson and Terry D. Humphries and Mark …
Colossal dielectric permittivity and high energy storage efficiency in barium strontium titanate …
dielectric permittivity and high energy storage efficiency in barium strontium ... (0123456789().,-volV) the most attractive methods that can be used to develop new electronic materials for the ...
A new strontium bromide MOF composite with improved performance for solar energy storage …
During the energy storage process, the crystal water inside the hydrated salt composite is removed by heating, and the energy is stored in the form of chemical [2] zeolite (Faujasite Na-X) MgCl 2 ...
Composition-driven inverse-to-conventional transformation of electrocaloric effect and large energy storage density in strontium …
In this work, (Ba1−xSrx)Zr0.1Ti0.9O3 (BSZTx, x = 0, 0.15, 0.25 and 0.35) thin films were successfully deposited on La0.7Sr0.3MnO3 (LSMO)-coated (001) SrTiO3 (STO) single crystal substrates using laser molecular beam epitaxy. The BSZTx thin films with compositions of x = 0 and 0.15 display an inverse electrocaloric effect (ECE) with a …
Barium Strontium Titanate-based multilayer ceramic capacitors with excellent energy storage …
DOI: 10.1016/j.ceramint.2024.05.455 Corpus ID: 270167822 Barium Strontium Titanate-based multilayer ceramic capacitors with excellent energy storage and charge-discharge performance @article{Yang2024BariumST, title={Barium Strontium Titanate-based ...
Structural, dielectric, and magnetic properties of transition metals substituted strontium aluminates for energy storage …
Group-II aluminates have a spinel structure widely used for energy storage purposes due to high thermal, chemical, and dielectric properties. These applications can be enhanced by the substitution of a small content of magnetic transition metals. In this study, MxSr1-xAl2O4 (where M = Mn, Fe, and Co and x = 0.1) compositions were successfully …
Ion Intercalation in Lanthanum Strontium Ferrite for Aqueous Electrochemical Energy Storage …
Ion intercalation of perovskite oxides in liquid electrolytes is a very promising method for controlling their functional properties while storing charge, which opens up its potential application in different energy and information technologies. Although the role of defect chemistry in oxygen intercalation in a gaseous environment is well established, the …
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