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Volumn 145, Issue , 2015, Pages 133-136
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Hydrothermal synthesis of flower-like SnO2 architectures with superior gas sensing properties
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Author keywords
Crystal growth; Gas sensing; Hydrothermal; Microstructure; Tin oxide
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Indexed keywords
ARCHITECTURE;
CHEMICAL DETECTION;
CRYSTAL GROWTH;
CRYSTAL MICROSTRUCTURE;
GAS DETECTORS;
GAS SENSING ELECTRODES;
GASES;
MICROSTRUCTURE;
TIN OXIDES;
FUNCTIONAL PROPERTIES;
GAS SENSING;
GAS SENSING MATERIAL;
GAS SENSING PROPERTIES;
HIERARCHICAL ARCHITECTURES;
HYDROTHERMAL;
HYDROTHERMAL METHODS;
THREEDIMENSIONAL (3-D);
HYDROTHERMAL SYNTHESIS;
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EID: 84922560155
PISSN: 0167577X
EISSN: 18734979
Source Type: Journal
DOI: 10.1016/j.matlet.2015.01.098 Document Type: Article |
Times cited : (22)
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References (24)
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