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Kulkarni, Atharva Y.; Majumder, Dwaipayan; Tripathi, Vaidehi S.; Kedarnath, G.; Wadawale, Amey P.; Singh, Vishal; Chauhan, Rohit Singh; Karmakar, Gourab; Tyagi, Adish (2025) A molecular precursor approach for the synthesis of hollow nanotubes and nanorods of antimonselite (Sb2Se3): an efficient electrocatalyst for hydrogen evolution reactions. Dalton Transactions, 54 (16). doi:10.1039/d4dt03435j

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Reference TypeJournal (article/letter/editorial)
TitleA molecular precursor approach for the synthesis of hollow nanotubes and nanorods of antimonselite (Sb2Se3): an efficient electrocatalyst for hydrogen evolution reactions
JournalDalton Transactions
AuthorsKulkarni, Atharva Y.Author
Majumder, DwaipayanAuthor
Tripathi, Vaidehi S.Author
Kedarnath, G.Author
Wadawale, Amey P.Author
Singh, VishalAuthor
Chauhan, Rohit SinghAuthor
Karmakar, GourabAuthor
Tyagi, AdishAuthor
Year2025Volume54
Issue16
PublisherRoyal Society of Chemistry (RSC)
DOIdoi:10.1039/d4dt03435jSearch in ResearchGate
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Mindat Ref. ID18312910Long-form Identifiermindat:1:5:18312910:3
GUID0
Full ReferenceKulkarni, Atharva Y.; Majumder, Dwaipayan; Tripathi, Vaidehi S.; Kedarnath, G.; Wadawale, Amey P.; Singh, Vishal; Chauhan, Rohit Singh; Karmakar, Gourab; Tyagi, Adish (2025) A molecular precursor approach for the synthesis of hollow nanotubes and nanorods of antimonselite (Sb2Se3): an efficient electrocatalyst for hydrogen evolution reactions. Dalton Transactions, 54 (16). doi:10.1039/d4dt03435j
Plain TextKulkarni, Atharva Y.; Majumder, Dwaipayan; Tripathi, Vaidehi S.; Kedarnath, G.; Wadawale, Amey P.; Singh, Vishal; Chauhan, Rohit Singh; Karmakar, Gourab; Tyagi, Adish (2025) A molecular precursor approach for the synthesis of hollow nanotubes and nanorods of antimonselite (Sb2Se3): an efficient electrocatalyst for hydrogen evolution reactions. Dalton Transactions, 54 (16). doi:10.1039/d4dt03435j
In(2025) Dalton Transactions Vol. 54 (16). Royal Society of Chemistry (RSC)

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