Articles with "ionic conductivity" as a keyword



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Designing Optimal Perovskite Structure for High Ionic Conduction.

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Published in 2019 at "Advanced materials"

DOI: 10.1002/adma.201905178

Abstract: Solid-oxide fuel/electrolyzer cells are limited by a dearth of electrolyte materials with low ohmic loss and an incomplete understanding of the structure-property relationships that would enable the rational design of better materials. Here, using epitaxial… read more here.

Keywords: ionic conductivity; unit cell; octahedral rotations; cell volume ... See more keywords
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Aligned Ionogel Electrolytes for High‐Temperature Supercapacitors

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Published in 2019 at "Advanced Science"

DOI: 10.1002/advs.201801337

Abstract: Abstract Ionogels are a new class of promising materials for use in all‐solid‐state energy storage devices in which they can function as an integrated separator and electrolyte. However, their performance is limited by the presence… read more here.

Keywords: ionic conductivity; ionogel electrolytes; high temperature; electrolytes high ... See more keywords
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Understanding Enhanced Ionic Conductivity in Composite Solid-State Electrolyte in a Wide Frequency Range of 10-2 -1010  Hz.

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Published in 2022 at "Advanced science"

DOI: 10.1002/advs.202200213

Abstract: The ionic conductivity of composite solid-state electrolytes (SSEs) can be tuned by introducing inorganic fillers, of which the mechanism remains elusive. Herein, ion conductivity of composite SSEs is characterized in an unprecedentedly wide frequency range… read more here.

Keywords: composite solid; ionic conductivity; solid state; conductivity ... See more keywords
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Lithium Superionic Conduction in BH4‐Substituted Thiophosphate Solid Electrolytes

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Published in 2022 at "Advanced Science"

DOI: 10.1002/advs.202204942

Abstract: Compared with conventional liquid electrolytes, solid electrolytes can better improve the safety properties and achieve high‐energy‐density Li‐ion batteries. Sulfide‐based solid electrolytes have attracted significant attention owing to their high ionic conductivities, which are comparable to… read more here.

Keywords: thiophosphate solid; lithium superionic; thiophosphate local; solid electrolytes ... See more keywords
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Stable Seamless Interfaces and Rapid Ionic Conductivity of Ca–CeO 2 /LiTFSI/PEO Composite Electrolyte for High‐Rate and High‐Voltage All‐Solid‐State Battery

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Published in 2020 at "Advanced Energy Materials"

DOI: 10.1002/aenm.202000049

Abstract: Stable and seamless interfaces among solid components in all-solid-state batteries (ASSBs) are crucial for high ionic conductivity and high rate performance. This can be achieved by the combination of functional inorganic material and flexible polymer… read more here.

Keywords: ionic conductivity; solid state; peo; conductivity ... See more keywords
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Influence of Anion and Crosslink Density on the Ionic Conductivity of 1,2,3-Triazolium-Based Poly(ionic liquid) Polyester Networks

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Published in 2017 at "Macromolecular Chemistry and Physics"

DOI: 10.1002/macp.201700337

Abstract: Covalently crosslinked, 1,2,3-triazolium-containing poly(ionic liquid) networks are prepared using Michael addition polymerization. Crosslink density and counteranion are varied in order to decipher the relationships between poly(ionic liquid) (PIL) structure and their thermal, mechanical, and conductive… read more here.

Keywords: ionic conductivity; ionic liquid; crosslink density; triazolium ... See more keywords
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Correlating Ionic Conductivity and Microstructure in Polyelectrolyte Hydrogels for Bioelectronic Devices.

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Published in 2022 at "Macromolecular rapid communications"

DOI: 10.1002/marc.202100687

Abstract: Hydrogels have become the material of choice in bioelectronic devices because their high-water content leads to efficient ion transport and a conformal interface with biological tissue. While the morphology of hydrogels has been thoroughly studied,… read more here.

Keywords: polyelectrolyte; conductivity; bioelectronic devices; ionic conductivity ... See more keywords
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Ion Hopping: Design Principles for Strategies to Improve Ionic Conductivity for Inorganic Solid Electrolytes.

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Published in 2022 at "Small"

DOI: 10.1002/smll.202107064

Abstract: Solid electrolytes are considered as an ideal substitution of liquid electrolytes, avoiding the potential hazards of volatilization, flammability, and explosion for liquid electrolyte-based rechargeable batteries. However, there are significant performance gaps to be bridged between… read more here.

Keywords: ion hopping; improve ionic; ion; solid electrolytes ... See more keywords
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Gel Polymer Electrolytes Design for Na‐Ion Batteries

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Published in 2022 at "Small Methods"

DOI: 10.1002/smtd.202201032

Abstract: Na‐ion battery has the potential to be one of the best types of next‐generation energy storage devices by virtue of their cost and sustainability advantages. With the demand for high safety, the replacement of traditional… read more here.

Keywords: gel polymer; ion batteries; polymer electrolytes; ion ... See more keywords
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Investigation on enhancement of electrical, dielectric and ion transport properties of nanoclay-based blend polymer nanocomposites

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Published in 2019 at "Polymer Bulletin"

DOI: 10.1007/s00289-019-02893-x

Abstract: An intercalated blend polymer nanocomposite (PNC) films based on blend (PEO–PVC), LiPF 6 as salt and modified montmorillonite (MMMT) as nanoclay are prepared via solution cast method. The impact of the nanoclay on the morphology,… read more here.

Keywords: ionic conductivity; based blend; polymer; blend polymer ... See more keywords
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Ionic conductivity and thermal expansion of anion-deficient Sr11Mo4O23 perovskite

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Published in 2020 at "Journal of Solid State Electrochemistry"

DOI: 10.1007/s10008-020-04688-x

Abstract: Transport properties of perovskite-type Sr11Mo4O23 and composite Sr11Mo4O23 - 1 wt% Al2O3 were studied at 400–1300 K in the oxygen partial pressure range from 0.21 down to 10−19 atm. The electromotive force and faradaic efficiency… read more here.

Keywords: ionic conductivity; thermal expansion; sr11mo4o23; spectroscopy ... See more keywords