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. 2019 Jan 29;53(2):115–124. doi: 10.1007/s13139-019-00584-z

Table 2.

Several reactions for 89Zr production

No. Nuclear reaction Target Product chemical form Yield (MBq/μAh) Time of irradiation Energy (MeV) Beam current (μA) Thickness of target Refs.
1 89Y(d,2n)89Zr Pellet Chloride 66.6 ± 5.6 12–20 min 16–7 3–5 240–340 mg cm−2 [2]
2 89Y(d,2n)89Zr Magnetron sputtering Chloride 58 ± 5 1 h 13 10–15 25 μm [3]
3 89Y(p,n)89Zr Magnetron sputtering Chloride 44 ± 4 1 h 14 10–30 25 μm [3]
4 89Y(p,n)89Zr Foil Oxalate 38.9 40 min 13 10 286 mg cm−2 [4]
5 89Y(p,n)89Zr Thin foil Oxalate 13 2 h 11.4–10 10 57 mg cm−2 [5]
6 89Y(p,n)89Zr Foil Oxalate 56.2 ± 4.1 2–5 h 15 15 100 μm [6]
7 89Y(p,n)89Zr Foil Oxalate 12.5 ± 0.5 2 h 18–10 12 150 μm [7]
8 89Y(p,n)89Zr Foil Oxalate 48.9 ± 4.4 1 h 12.8 45 640 μm [8]
9 89Y(p,n)89Zr Sputtered layer Oxalate 48.1 1 h 14 100 25 μm [9]
10 89Y(p,n)89Zr Sputtered coin Oxalate 6.4–18 30 min or 2 h 12.5 or 12.8 10–40 90–250 μm [10]
11 89Y(p,n)89Zr Y(NO3)3 solution (2.75 M) Oxalate 4.36 ± 0.48 2 h 14 40 Liquid target [11]