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Aug 5, 2025 -
Data of Bifunctional multi-metallic nitrogen-doped nanocarbon catalysts derived from 5-methylresorcinol
Comma Separated Values - 30.8 KB -
MD5: fec79d457004cfa6b5bd75d5fc227359
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Aug 5, 2025 -
Data of Bifunctional multi-metallic nitrogen-doped nanocarbon catalysts derived from 5-methylresorcinol
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MD5: 32b0ef966648f98b0513eb33c345c44b
2026. aasta migratsiooni käigus varasemast DataDOI süsteemist üle kantud kasutusstatistika kajastab tegevust eelmises DSpace-põhises süsteemis ega näita Dataverse’i uusi kasutusandmeid.
Usage statistics carried over from the previous DataDOI system as part of the 2026 migration reflect activity in the former DSpace-based system and do not represent... |
Aug 5, 2025 -
Data of Bifunctional multi-metallic nitrogen-doped nanocarbon catalysts derived from 5-methylresorcinol
Plain Text - 1.8 KB -
MD5: 566f667b63f640fe27e888a01a25eac7
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Aug 5, 2025 -
Data of Hierarchically Porous Fe−N−C Single-Atom Catalysts via Ionothermal Synthesis for Oxygen Reduction Reaction
Comma Separated Values - 65.4 KB -
MD5: 4d3c23b2c658f100797e3dd8c6f4f73a
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Aug 5, 2025 -
Data of Hierarchically Porous Fe−N−C Single-Atom Catalysts via Ionothermal Synthesis for Oxygen Reduction Reaction
Comma Separated Values - 38.0 KB -
MD5: 42574886864deddfe3ee6d1b5a28136f
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Aug 5, 2025 -
Data of Hierarchically Porous Fe−N−C Single-Atom Catalysts via Ionothermal Synthesis for Oxygen Reduction Reaction
Comma Separated Values - 49.1 KB -
MD5: 486c32ad4d19ba29023bc662403339e9
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Aug 5, 2025 -
Data of Hierarchically Porous Fe−N−C Single-Atom Catalysts via Ionothermal Synthesis for Oxygen Reduction Reaction
HTML - 1.0 KB -
MD5: 32b0ef966648f98b0513eb33c345c44b
2026. aasta migratsiooni käigus varasemast DataDOI süsteemist üle kantud kasutusstatistika kajastab tegevust eelmises DSpace-põhises süsteemis ega näita Dataverse’i uusi kasutusandmeid.
Usage statistics carried over from the previous DataDOI system as part of the 2026 migration reflect activity in the former DSpace-based system and do not represent... |
Aug 5, 2025 -
Data of Hierarchically Porous Fe−N−C Single-Atom Catalysts via Ionothermal Synthesis for Oxygen Reduction Reaction
Plain Text - 1.9 KB -
MD5: 16c3ca85a1309f17a77b8178a6753fd1
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Comma Separated Values - 52.0 KB -
MD5: d23a362d3ecf565d7108ece70a038c43
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Comma Separated Values - 36.8 KB -
MD5: b5f038728124b8cffe59d96046741128
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