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Unknown - 844 B -
MD5: 15608a6baf9f66d3514b8c19440ebdba
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Unknown - 866 B -
MD5: 18aff544db08c48b970e82219fee5ec8
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MD5: 1f9909ce8da6ad383a73ed0fa4c6479a
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Unknown - 41.0 KB -
MD5: f1cf530a6c8e721e6b13dafe3c59d374
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C++ Source - 17.3 KB -
MD5: f064afb699b2ba2d6e073ada62187e3e
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Nov 8, 2023
Papp, Mariann; Keszthelyi, Tamás; Vancza, Andor; Bajnóczi, G. Éva; Kováts, Éva; Németh, Zoltán; Bogdán, Csilla; Bazsó, Gábor; Rozgonyi, Tamás; Vankó, György, 2023, "Molecular Engineering to Tune Functionality: The Case of Cl-Substituted [Fe(terpy)2]2+", https://hdl.handle.net/21.15109/CONCORDA/VF4I94, ARP, V1
The properties of transition-metal complexes and their chemical dynamics can be effectively modified with ligand substitutions, and theory can be a great aid to such molecular engineering. In this paper, we first theoretically explored how substitution with a Cl atom at different... |
Nov 8, 2023 -
Molecular Engineering to Tune Functionality: The Case of Cl-Substituted [Fe(terpy)2]2+
Plain Text - 11.6 KB -
MD5: afb34d0ebd15447e6c747b02d32c5e75
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Nov 8, 2023 -
Molecular Engineering to Tune Functionality: The Case of Cl-Substituted [Fe(terpy)2]2+
Adobe PDF - 190.5 KB -
MD5: de4f991a55d69159b843477d00b747c2
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Nov 8, 2023 -
Molecular Engineering to Tune Functionality: The Case of Cl-Substituted [Fe(terpy)2]2+
Plain Text - 316 B -
MD5: 31ba0228d9ca4c1a4e940b9815e28f0b
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Nov 8, 2023 -
Molecular Engineering to Tune Functionality: The Case of Cl-Substituted [Fe(terpy)2]2+
Plain Text - 402 B -
MD5: 33e443a76556926f7216a190f02ffe56
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