Title : Tuning Electron-Conduction and Spin Transport in Magnetic Iron Oxide Nanoparticle Assemblies via Tetrathiafulvalene-Fused Ligands.

Pub. Date : 2015 Dec 22

PMID : 26563827






5 Functional Relationships(s)
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1 The TTF-COO-Fe3O4 NPs were prepared by replacing oleylamine (OA) from OA-coated 5.7 nm Fe3O4 NPs. carboxyl radical ras homolog family member H Homo sapiens
2 In the TTF-COO-Fe3O4 NPs, the ligand binding density was controlled by the ligand size, and spin polarization on the Fe3O4 NPs was greatly improved. carboxyl radical ras homolog family member H Homo sapiens
3 As a result, the interparticle spacing within the TTF-COO-Fe3O4 NP assemblies are readily controlled by the geometric length of TTF-based ligand. carboxyl radical ras homolog family member H Homo sapiens
4 As a result, the interparticle spacing within the TTF-COO-Fe3O4 NP assemblies are readily controlled by the geometric length of TTF-based ligand. carboxyl radical ras homolog family member H Homo sapiens
5 The TTF-COO-coating provides a viable way for producing stable magnetic Fe3O4 NP assemblies with controlled electron transport and MR for spintronics applications. carboxyl radical ras homolog family member H Homo sapiens