232
T. Onishi
References
1. Wrighton MS, Ellis AB, Wolczanski PT, Morse DL, Abrahamson HB, Ginley DG (1976)
J Am Chem Soc 98:2774–2779
2. Domen K, Naito S, Onishi T, Tamaru K, Soma M (1982) J Phys Chem 86:3657–3661
3. Domen K, Kudo A, Onishi T, Kosugi N, Kuroda H (1986) J Phys Chem 90:292–295
4. Fujishima A, Honda A (1972) Nature 238:37–38
5. Nozik AJ (1975) Nature 257:383–386
6. Capizzi M, Frova A (1970) Phys Rev Lett 25:1298–1302
7. Onishi T (2012) Adv Quantum Chem 64:31–81
8. Onishi T (2008) Int J Quant Chem 108:2856–2861
9. Onishi T (2010) Top Catal 53:566–570
10. Wang J, Yin S, Komatsu M, Zhang Q, Saito F, Sato T (2004) Appl Catal B 52:11–21
11. Miyauchi M, Takashio M, Tobimatsu H (2004) Langmuir 20:232–236
12. Ohno T, Tsubota T, Nakamura Y, Sayama K (2005) Appl Catal A 288:74–79
13. Ohno T, Tsubota T, Nishijima K, Miyamoto Z (2004) Chem Lett 33:750–751
14. Khan SUM, Shahry MA, Ingler WB Jr (2002) Science 297:2243–2245
15. Irie H, Watanabe Y, Hashimoto K (2003) Chem Lett 32:772–773
16. Crabtree RH (2005) The organometallic chemistry of the transition metals. Wiley, New York
17. Becke AD (1993) J Chem Phys 98:1372–1397
18. Tatewaki H, Huzinaga S (1979) J Chem Phys 71:4339–4348
19. Schmidt MW, Baldridge KK, Boatz JA, Elbert ST, Gordon MS, Jensen JH, Koseki S, Matsunaga N, Nguyen KA, Su S, Windus TL, Dupuis M, Montgomery JA (1993) J Comput Chem
14:1347–1363
20. Varetto U MOLEKEL 4. 3.; Swiss National Supercomputing Centre: Manno, Switzerland
21. Haeni JH, Irvin P, Chang W, Uecker R, Reiche P, Li YL, Choudhury S, Tian W, Hawley ME,
Craigo B, Tagantsev AK, Pan XQ, Streiffer SK, Chen LQ, Kirchoefer SW, Levy J, Schlom
DG (2004) Nature 430:758–761
22. Kasahara A, Nokumizu K, Hitoki G, Takata T, Kondo J, Hara M, Kobayashi H, Domen K
(2002) J Phys Chem A 106:6750–6753
T. Onishi
References
1. Wrighton MS, Ellis AB, Wolczanski PT, Morse DL, Abrahamson HB, Ginley DG (1976)
J Am Chem Soc 98:2774–2779
2. Domen K, Naito S, Onishi T, Tamaru K, Soma M (1982) J Phys Chem 86:3657–3661
3. Domen K, Kudo A, Onishi T, Kosugi N, Kuroda H (1986) J Phys Chem 90:292–295
4. Fujishima A, Honda A (1972) Nature 238:37–38
5. Nozik AJ (1975) Nature 257:383–386
6. Capizzi M, Frova A (1970) Phys Rev Lett 25:1298–1302
7. Onishi T (2012) Adv Quantum Chem 64:31–81
8. Onishi T (2008) Int J Quant Chem 108:2856–2861
9. Onishi T (2010) Top Catal 53:566–570
10. Wang J, Yin S, Komatsu M, Zhang Q, Saito F, Sato T (2004) Appl Catal B 52:11–21
11. Miyauchi M, Takashio M, Tobimatsu H (2004) Langmuir 20:232–236
12. Ohno T, Tsubota T, Nakamura Y, Sayama K (2005) Appl Catal A 288:74–79
13. Ohno T, Tsubota T, Nishijima K, Miyamoto Z (2004) Chem Lett 33:750–751
14. Khan SUM, Shahry MA, Ingler WB Jr (2002) Science 297:2243–2245
15. Irie H, Watanabe Y, Hashimoto K (2003) Chem Lett 32:772–773
16. Crabtree RH (2005) The organometallic chemistry of the transition metals. Wiley, New York
17. Becke AD (1993) J Chem Phys 98:1372–1397
18. Tatewaki H, Huzinaga S (1979) J Chem Phys 71:4339–4348
19. Schmidt MW, Baldridge KK, Boatz JA, Elbert ST, Gordon MS, Jensen JH, Koseki S, Matsunaga N, Nguyen KA, Su S, Windus TL, Dupuis M, Montgomery JA (1993) J Comput Chem
14:1347–1363
20. Varetto U MOLEKEL 4. 3.; Swiss National Supercomputing Centre: Manno, Switzerland
21. Haeni JH, Irvin P, Chang W, Uecker R, Reiche P, Li YL, Choudhury S, Tian W, Hawley ME,
Craigo B, Tagantsev AK, Pan XQ, Streiffer SK, Chen LQ, Kirchoefer SW, Levy J, Schlom
DG (2004) Nature 430:758–761
22. Kasahara A, Nokumizu K, Hitoki G, Takata T, Kondo J, Hara M, Kobayashi H, Domen K
(2002) J Phys Chem A 106:6750–6753
