Orbital Concept for Methane Activation
21
9. (a) Anderson JR, Tsai P (1987) J Chem Soc Chem Commun 1435–1436 (b) Sobolev VI, Dubkov
KA, Panna OV, Panov GI (1995) Catal Today 24:251–252 (c) Dubkov KA, Sobolev VI, Talsi
EP, Rodkin MA, Watkins NH, Shteinman AA, Panov GI (1997) J Mol Catal A Chemical
123:155–161
10. Yoshizawa K (2001) J Organomet Chem 635:100–109
11. Reviews (a) Yoshizawa K (2006) Acc Chem Res 39:375–382 (b) Yoshizawa K (2013) Bull
Chem Soc Jpn 86:1083–1116
12. Shestakov AF, Shilov AE (1996) J Mol Cat A 105:1–7
13. (a) Yoshizawa K, Yamabe T, Hoffmann R (1997) New J Chem 21:151–161 (b) Yoshizawa K,
Ohta T, Yamabe T, Hoffmann R (1997) J Am Chem Soc 119:12311–12321
14. Spence REvonH, Parks DJ, Piers WE, MacDonald MA, Zaworotko MJ, Rettig SJ (1995) Angew
Chem Int Ed Engl 34:1230–1233
15. Shu L, Nesheim JC, Kauffmann K, Münck E, Lipscomb JD, Que L (1997) Science 275:515–518
16. Yoshizawa K, Shiota Y, Yamabe T (1997) Chem Eur J 3:1160–1169
17. Yoshizawa K, Shiota Y, Yamabe T (1998) Organometallics 17:2825–2831
18. (a) Groves JT (1985) J Chem Educ 62:928–931 (b) Ortiz de M, Paul R (1995) Cytochrome
P450: Structure, Mechanism, and Biochemistry, 2nd ed, Plenum, New York
19. Chen Y-M, Clemmer DE, Armentrout PB (1994) J Am Chem Soc 116:7815–7826
20. Jackson TC, Jacobson DB, Freiser BS (1984) J Am Chem Soc 106:1252–1257
21. Kang H, Beauchamp JL (1986) J Am Chem Soc 108:5663–5668
22. Kang H, Beauchamp JL (1986) J Am Chem Soc 108:7502–7509
23. Jackson TC, Carlin TJ, Freiser BS (1986) J Am Chem Soc 108:1120–1126
24. Ryan MF, Fiedler A, Schröder D, Schwarz H (1994) Organometallics 13:4072–4081
25. Ryan MF, Fiedler A, Schröder D, Schwarz H (1995) J Am Chem Soc 117:2033–2040
26. Schwarz J, Wesendrup R, Schröder D, Schwarz H (1996) Chem Ber 129:1463–1474
27. Clemmer DE, Aristov N, Armentrout PB (1993) J Phys Chem 97:544–552
28. Azzaro M, Breton S, Decouzon M, Geribaldi S (1993) Int J Mass Spectrom Ion Processes
128:1–20
29. Yoshizawa K, Shiota Y, Yamabe T (1998) J Am Chem Soc 120:564–572
30. Hall C, Perutz RN (1996) Chem Rev 96:3125–3146
31. Lee S-K, Fox BG, Froland WA, Lipscomb JD, Münck EA (1993) J Am Chem Soc 115:6450–
6451
32. (a) Liu KE, Johnson CC, Newcomb M, Lippard SJ (1993) J Am Chem Soc 115:939–947 (b)
Choi SY, Eaton PE, Hollenberg PF, Liu KE, Lippard SJ, Newcomb M, Putt DA, Upadhyaya
SP, Xiong Y (1996) J Am Chem Soc 118:6547–6555
33. Valentine AM, Wilkinson B, Liu KE, Komar-Panicucci S, Priestley ND, Williams PG,
Morimoto H, Floss HG, Lippard SJ (1997) J Am Chem Soc 119:1818–1827
34. (a) Jin Y, Lipscomb JD (1999) Biochemistry 38:6178–6186 (b) Brazeau BJ, Austin RN, Tarr
C, Groves JT, Lipscomb JD (2001) J Am Chem Soc 123:11831–11837
35. (a) Yoshizawa K (1998) J Biol Inorg Chem 3:318–324 (b) Yoshizawa K, Ohta T, Yamabe T
(1998) Bull Chem Soc Jpn 71: 1899–1909 (c) Yoshizawa K, Suzuki A, Shiota Y, Yamabe T
(2000) Bull Chem Soc Jpn 73:815–827 (d) Yoshizawa K (2000) J Inorg Biochem 78:23–34 (e)
Yoshizawa K, Yumura T (2003) Chem Eur J 9:2347–2358
36. (a) Siegbahn PEM, Crabtree RH (1997) J Am Chem Soc 119:3103–3113 (b) Siegbahn PEM,
Crabtree RH, Nordlund P (1998) J Biol Inorg Chem 3:314–317 (c) Siegbahn PEM (1999) Inorg
Chem 38:2880–2889 (d) Siegbahn PEM, Blomberg MRA (2000) Chem Rev 100:421–438 (e)
Siegbahn PEM (2001) J Biol Inorg Chem 6:27–45
37. (a) Basch H, Mogi K, Musaev DG, Morokuma K (1999) J Am Chem Soc 121:7249–7256 (b)
Basch H, Musaev DG, Mogi K, Morokuma K (2001) J Phys Chem A 105:3615–3622 (c) Basch
H, Musaev DG, Morokuma K (2001) J Phys Chem B 105:8452–8460 (d) Torrent M, Musaev
DG, Basch H, Morokuma K (2002) J Comput Chem 23:59–76
38. (a) Dunietz BD, Beachy MD, Cao Y, Whittington DA, Lippard SJ, Friesner RA (2000) J Am
Chem Soc 122:2828–2839 (b) Gherman BF, Dunietz BD, Whittington DA, Lippard SJ, Friesner
RA (2001) J Am Chem Soc 123:3836–3837 (c) Friesner RA, Dunietz BD (2001) Acc Chem
Res 34:351–358 (d) Guallar V, Gherman BF, Miller WH, Lippard SJ, Friesner RA (2002) J
Am Chem Soc 124:3377–3384
21
9. (a) Anderson JR, Tsai P (1987) J Chem Soc Chem Commun 1435–1436 (b) Sobolev VI, Dubkov
KA, Panna OV, Panov GI (1995) Catal Today 24:251–252 (c) Dubkov KA, Sobolev VI, Talsi
EP, Rodkin MA, Watkins NH, Shteinman AA, Panov GI (1997) J Mol Catal A Chemical
123:155–161
10. Yoshizawa K (2001) J Organomet Chem 635:100–109
11. Reviews (a) Yoshizawa K (2006) Acc Chem Res 39:375–382 (b) Yoshizawa K (2013) Bull
Chem Soc Jpn 86:1083–1116
12. Shestakov AF, Shilov AE (1996) J Mol Cat A 105:1–7
13. (a) Yoshizawa K, Yamabe T, Hoffmann R (1997) New J Chem 21:151–161 (b) Yoshizawa K,
Ohta T, Yamabe T, Hoffmann R (1997) J Am Chem Soc 119:12311–12321
14. Spence REvonH, Parks DJ, Piers WE, MacDonald MA, Zaworotko MJ, Rettig SJ (1995) Angew
Chem Int Ed Engl 34:1230–1233
15. Shu L, Nesheim JC, Kauffmann K, Münck E, Lipscomb JD, Que L (1997) Science 275:515–518
16. Yoshizawa K, Shiota Y, Yamabe T (1997) Chem Eur J 3:1160–1169
17. Yoshizawa K, Shiota Y, Yamabe T (1998) Organometallics 17:2825–2831
18. (a) Groves JT (1985) J Chem Educ 62:928–931 (b) Ortiz de M, Paul R (1995) Cytochrome
P450: Structure, Mechanism, and Biochemistry, 2nd ed, Plenum, New York
19. Chen Y-M, Clemmer DE, Armentrout PB (1994) J Am Chem Soc 116:7815–7826
20. Jackson TC, Jacobson DB, Freiser BS (1984) J Am Chem Soc 106:1252–1257
21. Kang H, Beauchamp JL (1986) J Am Chem Soc 108:5663–5668
22. Kang H, Beauchamp JL (1986) J Am Chem Soc 108:7502–7509
23. Jackson TC, Carlin TJ, Freiser BS (1986) J Am Chem Soc 108:1120–1126
24. Ryan MF, Fiedler A, Schröder D, Schwarz H (1994) Organometallics 13:4072–4081
25. Ryan MF, Fiedler A, Schröder D, Schwarz H (1995) J Am Chem Soc 117:2033–2040
26. Schwarz J, Wesendrup R, Schröder D, Schwarz H (1996) Chem Ber 129:1463–1474
27. Clemmer DE, Aristov N, Armentrout PB (1993) J Phys Chem 97:544–552
28. Azzaro M, Breton S, Decouzon M, Geribaldi S (1993) Int J Mass Spectrom Ion Processes
128:1–20
29. Yoshizawa K, Shiota Y, Yamabe T (1998) J Am Chem Soc 120:564–572
30. Hall C, Perutz RN (1996) Chem Rev 96:3125–3146
31. Lee S-K, Fox BG, Froland WA, Lipscomb JD, Münck EA (1993) J Am Chem Soc 115:6450–
6451
32. (a) Liu KE, Johnson CC, Newcomb M, Lippard SJ (1993) J Am Chem Soc 115:939–947 (b)
Choi SY, Eaton PE, Hollenberg PF, Liu KE, Lippard SJ, Newcomb M, Putt DA, Upadhyaya
SP, Xiong Y (1996) J Am Chem Soc 118:6547–6555
33. Valentine AM, Wilkinson B, Liu KE, Komar-Panicucci S, Priestley ND, Williams PG,
Morimoto H, Floss HG, Lippard SJ (1997) J Am Chem Soc 119:1818–1827
34. (a) Jin Y, Lipscomb JD (1999) Biochemistry 38:6178–6186 (b) Brazeau BJ, Austin RN, Tarr
C, Groves JT, Lipscomb JD (2001) J Am Chem Soc 123:11831–11837
35. (a) Yoshizawa K (1998) J Biol Inorg Chem 3:318–324 (b) Yoshizawa K, Ohta T, Yamabe T
(1998) Bull Chem Soc Jpn 71: 1899–1909 (c) Yoshizawa K, Suzuki A, Shiota Y, Yamabe T
(2000) Bull Chem Soc Jpn 73:815–827 (d) Yoshizawa K (2000) J Inorg Biochem 78:23–34 (e)
Yoshizawa K, Yumura T (2003) Chem Eur J 9:2347–2358
36. (a) Siegbahn PEM, Crabtree RH (1997) J Am Chem Soc 119:3103–3113 (b) Siegbahn PEM,
Crabtree RH, Nordlund P (1998) J Biol Inorg Chem 3:314–317 (c) Siegbahn PEM (1999) Inorg
Chem 38:2880–2889 (d) Siegbahn PEM, Blomberg MRA (2000) Chem Rev 100:421–438 (e)
Siegbahn PEM (2001) J Biol Inorg Chem 6:27–45
37. (a) Basch H, Mogi K, Musaev DG, Morokuma K (1999) J Am Chem Soc 121:7249–7256 (b)
Basch H, Musaev DG, Mogi K, Morokuma K (2001) J Phys Chem A 105:3615–3622 (c) Basch
H, Musaev DG, Morokuma K (2001) J Phys Chem B 105:8452–8460 (d) Torrent M, Musaev
DG, Basch H, Morokuma K (2002) J Comput Chem 23:59–76
38. (a) Dunietz BD, Beachy MD, Cao Y, Whittington DA, Lippard SJ, Friesner RA (2000) J Am
Chem Soc 122:2828–2839 (b) Gherman BF, Dunietz BD, Whittington DA, Lippard SJ, Friesner
RA (2001) J Am Chem Soc 123:3836–3837 (c) Friesner RA, Dunietz BD (2001) Acc Chem
Res 34:351–358 (d) Guallar V, Gherman BF, Miller WH, Lippard SJ, Friesner RA (2002) J
Am Chem Soc 124:3377–3384
