HIGH-BRIGHTNESS NANODOT FLUOROPHORES BY COVALENT FUNCTIONALIZATION
A example compound according to the present disclosure includes, among other possible things, a nanodot carrier, a moiety, and a linker having first and second functional groups, wherein the first functional group is covalently linked to the nanodot carrier, and the second functional group is covalently linked to the moiety. An example method of making a nanodot carrier is also disclosed.
1 . A compound, comprising:
a nanodot carrier;
a moiety; and
a linker having first and second functional groups, wherein the first functional group is covalently linked to the nanodot carrier, and the second functional group is covalently linked to the moiety.
2 . The compound of claim 1 , wherein the nanodot carrier is an h-BN nanodot carrier.
3 . The compound of claim 2 , wherein the nanodot carrier has dimensions between about 2-10 nm.
4 . The compound of claim 3 , wherein the nanodot carrier comprises less than 30 layers of h-BN.
5 . The compound of claim 4 , wherein the nanodot carrier comprises between about 4 and 8 layers of h-BN.
6 . The compound of claim 4 , further comprising a plurality of linkers and a plurality of moieties, wherein each layer of the nanodot carrier is linked to 10 or more linkers of the plurality of linkers, and wherein each linker is linked to a moiety of the plurality of moieties.
7 . The compound of claim 1 , wherein the nanodot carrier has at least one polar group, and wherein the first functional group is covalently linked to the nanodot carrier at the at least one polar group.
8 . The compound of claim 7 , wherein the at least one polar group is a hydroxyl (—OH) group.
9 . The compound of claim 1 , wherein the moiety includes at least one of a fluorescient entity, a biological molecule, a chelating agent, and combinations thereof.
10 . A method of making a nanodot carrier, comprising:
mechanically processing nanodots in polar liquid to create imperfections on the nanodots; and
treating the nanodots to provide polar groups at the imperfections.
11 . The method of claim 10 , further comprising covalently linking a linker to the nanodot, the linker having first and second functional groups, wherein the first functional group covalently links to the polar group.
12 . The method of claim 11 , further comprising covalently linking a moiety to the second functional group.
13 . The method of claim 12 , wherein the moiety is a fluorescent entity.
14 . The method of claim 10 , wherein the mechanically processing includes agitation.
15 . The method of claim 14 , wherein the agitation is accomplished by sonication or by homogenizer.
16 . The method of claim 10 , wherein the treating is an acid treatment, and wherein the polar groups are hydroxyl (—OH) groups.
17 . The method of claim 10 , wherein the polar liquid is dimethylformamide (DMF).
18 . The method of claim 10 , further comprising precipitating the nanodot carriers after the mechanical processing by centrifuging the nanodot carriers and polar liquid.
19 . The method of claim 18 , further comprising exchanging the polar liquid with water after the centrifuging.
20 . The method of claim 19 , wherein the treating is an acid treatment, and wherein the treating is performed after the exchanging.