MANGANESE OXIDE NANOWIRE, RECHARGEABLE BATTERY INCLUDING THE SAME AND METHOD OF PRODUCING MANGANESE OXIDE
Provided are a manganese oxide nanowire, specifically, a manganese oxide nanowire having an aspect ratio of 20 or more, which can be widely used in various fields, including batteries, oxygen generators, and redox catalysts, a rechargeable battery including the manganese oxide nanowire, and a method of producing manganese oxide. Since the manganese oxide nanowire having a large aspect ratio has an increased specific surface area, it can be effectively used in various fields. In addition, various kinds of manganese oxide nanowires can be simply manufactured.
1 : A manganese oxide nanowire having an aspect ratio of 20 or more.
2 : The manganese oxide nanowire of claim 1 , wherein the manganese oxide nanowire is a βMnO 2 nanowire, a γMnOOH nanowire, or a Li x Mn 2 O 4 nanowire.
3 : The manganese oxide nanowire of claim 1 , wherein the manganese oxide nanowire has a line width in a range of 15 nm to 50 nm.
4 : A battery including the manganese oxide nanowire of any one of claims 1 to 3 .
5 : A method of producing a manganese oxide nanowire, the method comprising:
preparing a mixed solution including a manganese salt and an oxidant;
adjusting a pH level by adding an alkali hydroxide salt to the mixed solution; and
reacting the pH adjusted mixed solution at a temperature in a range of 50° C. to 200° C. for 1 hour to 10 days.
6 : The method of claim 5 , wherein the manganese oxide nanowire is a γ-MnOOH nanowire.
7 : The method of claim 5 , wherein the manganese oxide nanowire is a β-MnO 2 nanowire, and the method further comprises annealing the manganese oxide nanowire in air at a temperature in a range of 200° C. to 500° C. for 1 hour to 10 days.
8 : The method of claim 5 , wherein the manganese oxide nanowire is a Li x Mn 2 O 4 nanowire, and the method further comprises preparing a βMnO 2 nanowire by annealing the manganese oxide nanowire in the air at a temperature in a range of 200° C. to 500° C. for 1 hour to 10 days, and mixing the βMnO 2 nanowire with a lithium salt and annealing the mixture at a temperature in a range of 300° C. to 650° C. for 1 hour to 10 days.
9 : The method of any one of claims 5 to 8 , wherein the manganese oxide nanowire has an aspect ratio of 20 or more.
10 : The method of any one of claims 5 to 8 , wherein the pH level is in a range of 9.3 to 10.5.
11 : The method of any one of claims 5 to 8 , wherein the manganese salt is MnSO 4 , Mn[NO 3 ] 2 , MnCl 2 , or Mn[CH 3 COO] 2 .
12 : The method of any one of claims 5 to 8 , wherein the oxidant is [NH 4 ] 2 S 2 O 8 , Li 2 S 2 O 8 , Na 2 S 2 O 8 , or K 2 S 2 O 8 .
13 : The method of any one of claims 5 to 8 , wherein 500 parts by weight of the oxidant is mixed based on 100 parts by weight of the manganese salt.
14 : The method of any one of claims 5 to 8 , wherein the lithium salt is at least one metal salt selected from the group consisting of LiOH, LiNO 3 , Li 2 CO 3 , Li(CH 3 O), Li(CH 3 CH 2 O), Li(CH 3 COO), Li 2 O, and hydrates thereof.