COMPOSITE MATERIAL, THE METHOD OF ITS PREPARATION AND APPLICATION THEREOF

A stressed composite material is disclosed, characterized in that it contains Li4Ti5O12 spinel nanocrystallites in an amount of 25-93% by weight, encapsulated during the pyrolysis process in a tightly adherent and conductive carbon aerogel matrix with a carbon content of 7-74% by weight, with a spec...

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Hauptverfasser: KUBICKA, Marcelina, MOLENDA, Marcin, BAKIERSKA, Monika, CHUDZIK, Krystian, BIELEWSKI, Jakub
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creator KUBICKA, Marcelina
MOLENDA, Marcin
BAKIERSKA, Monika
CHUDZIK, Krystian
BIELEWSKI, Jakub
description A stressed composite material is disclosed, characterized in that it contains Li4Ti5O12 spinel nanocrystallites in an amount of 25-93% by weight, encapsulated during the pyrolysis process in a tightly adherent and conductive carbon aerogel matrix with a carbon content of 7-74% by weight, with a specific surface area of the composite of 44-426 m2/g, and a pore volume of the composite of 0.03-0.21 cm3/g, and an average pore size of the composite of 2-3 nm. Also disclosed is a method for obtaining the stressed composite material and an application of the stressed composite material for manufacturing electrode materials and lithium-ion cells.
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subjects BASIC ELECTRIC ELEMENTS
CAPACITORS
CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES ORLIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
ELECTRICITY
PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY
title COMPOSITE MATERIAL, THE METHOD OF ITS PREPARATION AND APPLICATION THEREOF
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