Sputtering target, oxide semiconductor film and semiconductor device
A sputtering target including an oxide sintered body, the oxide sintered body containing indium (In) and at least one element selected from gadolinium (Gd), dysprosium (Dy), holmium (Ho), erbium (Er) and ytterbium (Yb), and the oxide sintered body substantially being of a bixbyite structure.
1. A sputtering target formed of an oxide sintered body,
the oxide sintered body comprising indium (In) and at least one element selected from gadolinium (Gd), dysprosium (Dy), holmium (Ho), erbium (Er) and ytterbium (Yb), and
the oxide sintered body substantially being of a bixbyite structure.
2. The sputtering target according to claim 1 , wherein an atomic ratio represented by M/(In+M) is 0.01 to 0.25, wherein M is the content of gadolinium (Gd), dysprosium (Dy), holmium (Ho), erbium (Er) and ytterbium (Yb).
3. The sputtering target according to claim 1 , wherein the sputtering target further comprises a positive divalent metal element and the content of the positive divalent metal element to the total amount of metal elements contained in the sputtering target is 1 to 10 at %.
4. The sputtering target according to claim 3 , wherein the positive divalent metal element is zinc (Zn) and/or magnesium (Mg).
5. The sputtering target according to claim 1 , wherein the sputtering target further comprises a metal element with an atomic valency of positive tetravalency or higher, wherein the content of the metal element with an atomic valency of positive tetravalency or higher to the total metal elements contained in the sputtering target is 100 ppm to 2000 ppm in atomic ratio.
6. The sputtering target according to claim 5 , wherein the metal element with an atomic valency of positive tetravalency or higher metal element is at least one element selected from germanium (Ge), titanium (Ti), zirconium (Zr), niobium (Nb) and cerium (Ce).
7. An oxide semiconductor film comprising indium (In) and at least one element selected from gadolinium (Gd), dysprosium (Dy), holmium (Ho), erbium (Er) and ytterbium (Yb), and
the oxide semiconductor film substantially being of a bixbyite structure.
8. The oxide semiconductor film according to claim 7 , wherein an atomic ratio represented by M/(In+M) is 0.01 to 0.25, wherein M is the content of gadolinium (Gd), dysprosium (Dy), holmium (Ho), erbium (Er) and ytterbium (Yb).
9. The oxide semiconductor film according to claim 7 , wherein the oxide semiconductor film further comprises a positive divalent metal element, wherein the content of the positive divalent metal element to the total metal elements contained in the oxide semiconductor film is 1 to 10 at %.
10. The oxide semiconductor film according to claim 9 , wherein the positive divalent metal element is zinc (Zn) and/or magnesium (Mg).
11. The oxide semiconductor film according to claim 7 , wherein the oxide semiconductor film further comprises a metal element with an atomic valency of positive tetravalency or higher, and the content of the metal element with an atomic valency of tetravalency or higher to the total metal elements contained in the oxide semiconductor film is 100 ppm to 2000 ppm in atomic ratio.
12. The oxide semiconductor film according to claim 11 , wherein the metal element with an atomic valency of positive tetravalency or higher is at least one element selected from germanium (Ge), titanium (Ti), zirconium (Zr), niobium (Nb) and cerium (Ce).