Metal oxide nanoparticle
A nanoparticle that includes a metal oxide core having the formula M 2 O 5 wherein M is either tantalum (V) or niobium (V) and alkylsiloxane ligands surrounding the metal oxide core.
1. A metal oxide nanoparticle comprising:
a metal oxide core comprising tantalum (V) and niobium (V); and
alkylsiloxane ligands bonded to the metal oxide core.
2. The metal oxide nanoparticle of claim 1 , wherein the metal oxide core is doped with a metal selected from the group consisting of: Ti, Zr, Hf, Cr, Mo, W, V, and any combination thereof.
3. The metal oxide nanoparticle of claim 1 , wherein the alkylsiloxane ligands are selected from the group consisting of: isobutylsiloxane, allylsiloxane, vinylsiloxane, n-propylsiloxane, n-butylsiloxane, sec-butylsiloxane, tert-butylsiloxane, phenylsiloxane, n-octyl siloxane, isooctylsiloxane n-dodecylsiloxane, 4-(trimethylsilyl)phenylsiloxane, para-tolylsiloxane, 4-fluorophenylsiloxane, 4-chlorophenylsiloxane, 4-bromophenylsiloxane, 4-iodophenylsiloxane, 4-cyanophenylsiloxane, benzylsiloxane, methylsiloxane, ethylsiloxane, 4-(trifluoromethyl)phenylsiloxane, 4-ammoniumbutylsiloxane, and any combination thereof.
4. The metal oxide nanoparticle of claim 1 , wherein the alkylsiloxane ligands are isobutylsiloxane.
5. The metal oxide nanoparticle of claim 1 , wherein the alkylsiloxane ligands are crosslinked to alkylsiloxane ligands of at least one other nanoparticle.
6. The metal oxide nanoparticle of claim 1 , wherein the metal core comprises Ta 2 O 5 and Nb 2 O 5 .
7. The metal oxide nanoparticle of claim 1 , wherein at least some of the alkylsiloxane ligands are terminated by a functional group.
8. The metal oxide nanoparticle of claim 7 , wherein at least some of the alkylsiloxane ligands are terminated by an ammonium group.