· t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How...

18
1

Transcript of  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How...

Page 1:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

1

Page 2:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

2

Page 3:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

3

Page 4:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

4

Page 5:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

5

Page 6:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

6

Page 7:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

7

Page 8:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

8

Page 9:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

9

Page 10:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

10

Page 11:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

11

Page 12:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

12

Page 13:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

13

Page 14:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

14

Page 15:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

15

Page 16:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

16

Page 17:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

17

Page 18:  · t1/2(decomposition) = 34 h/ 140 oc ... [6+2] [5+2+1] [4+4] Ian Mangion MacMillan Group ... How can transition metal-mediated cycloadditions be applied to 6-membered ...

18