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2015 | OriginalPaper | Chapter

1. Introduction

Authors : Anjali Patel, Soyeb Pathan

Published in: Polyoxomolybdates as Green Catalysts for Aerobic Oxidation

Publisher: Springer International Publishing

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Abstract

Chemical industries have contributed to worldwide economic development over the past century and chemical products make an enormous contribution to the quality of our lives. At the same time, the manufacturing processes of chemicals have also led to vast amounts of wastes. Hence, today the reduction/elimination of these wastes is a central issue. Towards the same, awareness within the fine chemicals and pharmaceutical industry to improve the environmental and production costs of synthesis over the release of waste products and toxins into the environment has been increased tremendously. A sustainable society is one that meets the needs of the current generation without sacrificing the ability to meet the needs of future generations. Sustainable development is a strategic goal. It can be reached using various approaches, and this is where green chemistry comes in.

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Literature
1.
go back to reference Sheldon RA (2000) C R Acad Sci Paris IIc Chimie/Chemistry 3:541–551 Sheldon RA (2000) C R Acad Sci Paris IIc Chimie/Chemistry 3:541–551
2.
go back to reference Sheldon RA (1991) Stud Surf Sci Catal 59:33–54 Sheldon RA (1991) Stud Surf Sci Catal 59:33–54
3.
go back to reference Piera J, Bäckvall J-E (2008) Angew Chem Int Ed 47:3506–3523 Piera J, Bäckvall J-E (2008) Angew Chem Int Ed 47:3506–3523
4.
go back to reference Parmeggiani C, Cardona F (2012) Green Chem 14:547–564 Parmeggiani C, Cardona F (2012) Green Chem 14:547–564
5.
go back to reference Sheldon RA, Arends IWCE, Dijksman A (2000) Catal Today 57:157–166 Sheldon RA, Arends IWCE, Dijksman A (2000) Catal Today 57:157–166
6.
go back to reference Komiya N, Nakae T, Sato H, Naota T (2006) Chem Commun 46:4829–4831 Komiya N, Nakae T, Sato H, Naota T (2006) Chem Commun 46:4829–4831
7.
go back to reference Wang Q, Zhang Y, Zheng G, Tian Z, Yang G (2011) Catal Commun 14:92–95 Wang Q, Zhang Y, Zheng G, Tian Z, Yang G (2011) Catal Commun 14:92–95
8.
go back to reference Zhao G, Hu H, Deng M, Lu Y (2011) Chem Commun 47(34):9642–9644 Zhao G, Hu H, Deng M, Lu Y (2011) Chem Commun 47(34):9642–9644
9.
go back to reference Ding Y, Ma B, Gao Q, Li G, Yan L, Suo J (2005) J Mol Catal A Chem 230:121–128 Ding Y, Ma B, Gao Q, Li G, Yan L, Suo J (2005) J Mol Catal A Chem 230:121–128
10.
go back to reference Peng G, Wang Y, Hu C, Wang E, Feng S, Zhou Y, Ding H, Liu Y (2001) Appl Catal A Gen 218:91–99 Peng G, Wang Y, Hu C, Wang E, Feng S, Zhou Y, Ding H, Liu Y (2001) Appl Catal A Gen 218:91–99
11.
go back to reference Li M, Shen J, Ge X, Chen X (2001) Appl Catal A Gen 206:161–169 Li M, Shen J, Ge X, Chen X (2001) Appl Catal A Gen 206:161–169
12.
go back to reference Yang JH, Lee DW, Lee JH, Hyun JC, Lee KY (2000) Appl Catal A Gen 194–195:123–127 Yang JH, Lee DW, Lee JH, Hyun JC, Lee KY (2000) Appl Catal A Gen 194–195:123–127
13.
go back to reference Li W, Lee K, Oshihara K, Ueda W (1999) Appl Catal A Gen 182:357–363 Li W, Lee K, Oshihara K, Ueda W (1999) Appl Catal A Gen 182:357–363
14.
go back to reference Mizuno N, Tateishi M, Iwamoto M (1996) J Catal 163:87–94 Mizuno N, Tateishi M, Iwamoto M (1996) J Catal 163:87–94
15.
go back to reference Mizuno N, Hikichi S, Yamaguchi K, Uchida S, Nakagawa Y, Uehara K, Kamata K (2006) Catal Today 117:32–36 Mizuno N, Hikichi S, Yamaguchi K, Uchida S, Nakagawa Y, Uehara K, Kamata K (2006) Catal Today 117:32–36
16.
go back to reference Pope MT, Muller A (eds) (2001) Polyoxometalate chemistry: from topology via self-assembly to applications. Kluwer, Dordrecht Pope MT, Muller A (eds) (2001) Polyoxometalate chemistry: from topology via self-assembly to applications. Kluwer, Dordrecht
17.
go back to reference Berzelius JJ (1826) Pogg Ann Phys Chem 6:369–392 Berzelius JJ (1826) Pogg Ann Phys Chem 6:369–392
18.
go back to reference Pope MT, Muller A (2003) Polyoxometalate molecular science. Kluwer Academic Publishers, Dordrecht Pope MT, Muller A (2003) Polyoxometalate molecular science. Kluwer Academic Publishers, Dordrecht
19.
go back to reference Svanberg L, Struve H (1848) J Prakt Chem 44:257–291 Svanberg L, Struve H (1848) J Prakt Chem 44:257–291
20.
go back to reference Miolati A, Pizzighelli R (1908) J Prakt Chem 77:417–456 Miolati A, Pizzighelli R (1908) J Prakt Chem 77:417–456
21.
go back to reference Rosenheim A, Jaenicke H (1917) Z Anorg Allg Chem 100:304–354 Rosenheim A, Jaenicke H (1917) Z Anorg Allg Chem 100:304–354
22.
go back to reference Pauling LC (1929) J Am Chem Soc 51:2868–2880 Pauling LC (1929) J Am Chem Soc 51:2868–2880
23.
24.
go back to reference Keggin JF (1934) Proc Roy Soc A 144:75–100 Keggin JF (1934) Proc Roy Soc A 144:75–100
25.
go back to reference Signer R, Gross H (1934) Helv Chim Acta 17:1076–1080 Signer R, Gross H (1934) Helv Chim Acta 17:1076–1080
26.
go back to reference Bradley AJ, Illingworth JW (1936) Proc R Soc A157:113–131 Bradley AJ, Illingworth JW (1936) Proc R Soc A157:113–131
27.
go back to reference Brown GM, Noe-Spirlet M-R, Busing WR, Levy HA (1977) Acta Crystallogr B 33:1038–1046 Brown GM, Noe-Spirlet M-R, Busing WR, Levy HA (1977) Acta Crystallogr B 33:1038–1046
28.
29.
go back to reference Okuhara T, Mizuno N, Misono M (1996) Adv Catal 41:113–252 Okuhara T, Mizuno N, Misono M (1996) Adv Catal 41:113–252
30.
go back to reference Kozhevnikov IV (1998) Chem Rev 98(1):171–198 Kozhevnikov IV (1998) Chem Rev 98(1):171–198
31.
go back to reference Mizuno N, Misono M (1998) Chem Rev 98(1):199–218 Mizuno N, Misono M (1998) Chem Rev 98(1):199–218
32.
go back to reference Kozhevnikov IV (2002) Catalysts for fine chemical synthesis: catalysis by polyoxometalates, vol 2. Wiley, New York Kozhevnikov IV (2002) Catalysts for fine chemical synthesis: catalysis by polyoxometalates, vol 2. Wiley, New York
33.
go back to reference Mallat T, Baiker A (2004) Chem Rev 104:3037–3058 Mallat T, Baiker A (2004) Chem Rev 104:3037–3058
34.
go back to reference Sheldon RA, Arends I, Hanefeld U (2007) Green chemistry and catalysis. Wiley-VCH Weinheim, Germany Sheldon RA, Arends I, Hanefeld U (2007) Green chemistry and catalysis. Wiley-VCH Weinheim, Germany
35.
go back to reference Mizuno N, Yamaguchi K, Kamata K, Nakagawa Y (2008) In: Oyama ST (ed) Mechanisms in homogeneous and heterogeneous epoxidation catalysis. Elsevier Publications, Amsterdam, pp 155–176 Mizuno N, Yamaguchi K, Kamata K, Nakagawa Y (2008) In: Oyama ST (ed) Mechanisms in homogeneous and heterogeneous epoxidation catalysis. Elsevier Publications, Amsterdam, pp 155–176
36.
go back to reference Mizuno N, Kamata K, Uchida S, Yamaguchi K (2009) In: Mizuno N (ed) Modern heterogeneous oxidation catalysis. Wiley-VCH Weinheim, Germany, pp 185–216 Mizuno N, Kamata K, Uchida S, Yamaguchi K (2009) In: Mizuno N (ed) Modern heterogeneous oxidation catalysis. Wiley-VCH Weinheim, Germany, pp 185–216
37.
go back to reference Ren Y, Yue B, Gu M, He H (2010) Materials 3:764–785 Ren Y, Yue B, Gu M, He H (2010) Materials 3:764–785
38.
go back to reference Clerici MG, Kholdeeva OA (eds) (2013) Liquid phase oxidation via heterogeneous catalysis: organic synthesis and industrial applications. Wiley Inc., Hoboken, New Jersey Clerici MG, Kholdeeva OA (eds) (2013) Liquid phase oxidation via heterogeneous catalysis: organic synthesis and industrial applications. Wiley Inc., Hoboken, New Jersey
39.
go back to reference Patel A (ed) (2013) Environmentally benign catalysts for cleaner organic reactions. Springer Inc., New York Patel A (ed) (2013) Environmentally benign catalysts for cleaner organic reactions. Springer Inc., New York
40.
go back to reference Lyons JE, Ellis PE Jr, Langdale WA, Myers HK Jr (1990) US Patent 4916101 A, 10 Apr 1990 Lyons JE, Ellis PE Jr, Langdale WA, Myers HK Jr (1990) US Patent 4916101 A, 10 Apr 1990
41.
go back to reference Knifton JF (1994) US Patent 5300703, 5 Apr 1994 Knifton JF (1994) US Patent 5300703, 5 Apr 1994
42.
go back to reference Kresge CT, Marler DO, Rav GS, Rose BH (1994) US Patent 5324881, 28 June 1994 Kresge CT, Marler DO, Rav GS, Rose BH (1994) US Patent 5324881, 28 June 1994
43.
go back to reference Soled SL, McVicker GB, Niseo S, Gates WE (1995) US 5391532, 21 Feb 1995 Soled SL, McVicker GB, Niseo S, Gates WE (1995) US 5391532, 21 Feb 1995
44.
go back to reference Angstadt HP, Hollstein EJ, Hsu C-Y (1996) US 5493067, 20 Feb 1996 Angstadt HP, Hollstein EJ, Hsu C-Y (1996) US 5493067, 20 Feb 1996
45.
go back to reference Rhubright DC, Burrington JD, Zhu PY (1998) US 5817831, 6 Oct 1998 Rhubright DC, Burrington JD, Zhu PY (1998) US 5817831, 6 Oct 1998
46.
go back to reference Davis ME, Dillon CJ, Holles JH, Labinger JA, Brait A (2005) US 6914029 B2, 5 July 2005 Davis ME, Dillon CJ, Holles JH, Labinger JA, Brait A (2005) US 6914029 B2, 5 July 2005
47.
go back to reference Liu H, Iglesia E (2005) US 6956134 B2, 18 Oct 2005 Liu H, Iglesia E (2005) US 6956134 B2, 18 Oct 2005
48.
go back to reference Bailey C, Gracey B (2008) US 2008/004466 A1, 3 Jan 2008 Bailey C, Gracey B (2008) US 2008/004466 A1, 3 Jan 2008
49.
go back to reference Patel A, Bhatt N (2009) US 7692047 B2, 6 Apr 2010 Patel A, Bhatt N (2009) US 7692047 B2, 6 Apr 2010
50.
go back to reference Gracey BP, Haining GJ, Partington SR (2010) US 2010/0292520A1, 18 Nov 2010 Gracey BP, Haining GJ, Partington SR (2010) US 2010/0292520A1, 18 Nov 2010
51.
go back to reference Okun N, Hill CL (2010) US 7655594 B2, 2 Feb 2010 Okun N, Hill CL (2010) US 7655594 B2, 2 Feb 2010
52.
go back to reference Voitl T, Von Rohr PR (2011) US 7906687, 15 Mar 2011 Voitl T, Von Rohr PR (2011) US 7906687, 15 Mar 2011
53.
go back to reference Bhotla VRNG, Halligudi SB, Kishan G, Mallika SP, Veldurthy B (2011) US 7868190 B2, 11 Jan 2011 Bhotla VRNG, Halligudi SB, Kishan G, Mallika SP, Veldurthy B (2011) US 7868190 B2, 11 Jan 2011
54.
go back to reference Jaensch H, Dakka JM, Benitez FM, Kortz U, Richards RM (2011) US 7906686 B2, 15 Mar 2011 Jaensch H, Dakka JM, Benitez FM, Kortz U, Richards RM (2011) US 7906686 B2, 15 Mar 2011
55.
56.
go back to reference Sadakane M, Steckhan E (1998) Chem Rev 98:219–237 Sadakane M, Steckhan E (1998) Chem Rev 98:219–237
57.
go back to reference Thouvenot R, Proust A, Gouzerh P (2008) Chem Comm 16:1837–1852 Thouvenot R, Proust A, Gouzerh P (2008) Chem Comm 16:1837–1852
58.
go back to reference Pope MT (1983) Heteropoly and isopoly oxometalates. Springer-Verlag, Berlin Pope MT (1983) Heteropoly and isopoly oxometalates. Springer-Verlag, Berlin
59.
go back to reference Pope MT, Müller A (1991) Polyoxometalate chemistry: an old field with new dimensions in several disciplines. Angew Chem Int Ed Engl 30:34–48 Pope MT, Müller A (1991) Polyoxometalate chemistry: an old field with new dimensions in several disciplines. Angew Chem Int Ed Engl 30:34–48
60.
go back to reference Baker LCW, Glick D (1998) Chem Rev 98:3–50 Baker LCW, Glick D (1998) Chem Rev 98:3–50
61.
go back to reference Nsouli NH, Ismail AH, Helgadottir IS, Dickman MH, Clemente-Juan JM, Kortz U (2009) Inorg Chem 48:5884–5890 Nsouli NH, Ismail AH, Helgadottir IS, Dickman MH, Clemente-Juan JM, Kortz U (2009) Inorg Chem 48:5884–5890
62.
go back to reference Mitchell SG, Miras HN, Long D, Cronin L (2010) Inorg Chim Acta 363:4240–4246 Mitchell SG, Miras HN, Long D, Cronin L (2010) Inorg Chim Acta 363:4240–4246
63.
go back to reference Matsumoto K, Sasaki Y (1976) Bull Chem Soc Jpn 49:156–158 Matsumoto K, Sasaki Y (1976) Bull Chem Soc Jpn 49:156–158
64.
go back to reference Brevard C, Schimpf R, Tourne G, Tourne C (1983) J Am Chem Soc 105:7059–7063 Brevard C, Schimpf R, Tourne G, Tourne C (1983) J Am Chem Soc 105:7059–7063
65.
go back to reference Honma N, Kusaka K, Ozeki T (2002) Chem Comm 2896–2897 Honma N, Kusaka K, Ozeki T (2002) Chem Comm 2896–2897
66.
go back to reference Laurencin D, Proust A, Gerard H (2008) Inorg Chem 47:7888–7893 Laurencin D, Proust A, Gerard H (2008) Inorg Chem 47:7888–7893
67.
go back to reference Shringarpure P, Patel A (2008) Dalton Trans 3953–3955 Shringarpure P, Patel A (2008) Dalton Trans 3953–3955
68.
go back to reference Shringarpure P, Patel A (2010) Dalton Trans 39:2615–2621 Shringarpure P, Patel A (2010) Dalton Trans 39:2615–2621
69.
go back to reference Pathan S, Patel A (2010) J Coord Chem 63:4041–4049 Pathan S, Patel A (2010) J Coord Chem 63:4041–4049
70.
go back to reference Shringarpure P, Patel A (2011) Chem Eng J 173:612–619 Shringarpure P, Patel A (2011) Chem Eng J 173:612–619
71.
go back to reference Shringarpure P, Patel A (2011) Ind Eng Chem Res 50:9069–9076 Shringarpure P, Patel A (2011) Ind Eng Chem Res 50:9069–9076
72.
go back to reference Patel A, Narkhede N (2013) Catal Sci Technol 3:3317–3325 Patel A, Narkhede N (2013) Catal Sci Technol 3:3317–3325
73.
go back to reference Narkhede N, Patel A, Singh S (2014) Dalton Trans 43:2512–2520 Narkhede N, Patel A, Singh S (2014) Dalton Trans 43:2512–2520
74.
go back to reference Patel A, Singh S (2014) Microporous Mesoporous Mater 195:240–249 Patel A, Singh S (2014) Microporous Mesoporous Mater 195:240–249
75.
go back to reference Combs-Walker LA, Hill CL (1991) Inorg Chem 30:4016–4026 Combs-Walker LA, Hill CL (1991) Inorg Chem 30:4016–4026
76.
go back to reference Hill CL, Brown RB (1986) J Am Chem Soc 108:536–538 Hill CL, Brown RB (1986) J Am Chem Soc 108:536–538
77.
go back to reference Toth JE, Melton JD, Cabelli D, Bielski BHJ, Anson FC (1990) Inorg Chem 29:1952–1957 Toth JE, Melton JD, Cabelli D, Bielski BHJ, Anson FC (1990) Inorg Chem 29:1952–1957
78.
go back to reference Rong C, Anson FC (1994) Inorg Chem 33:1064–1070 Rong C, Anson FC (1994) Inorg Chem 33:1064–1070
79.
go back to reference Muller A, Dloczik L, Dittman E, Pope MT (1997) Inorg Chim Acta 257:231–239 Muller A, Dloczik L, Dittman E, Pope MT (1997) Inorg Chim Acta 257:231–239
80.
go back to reference Sadakane M, Tsukuma D, Dickmann M, Bassil B, Kortz U, Higashijima M, Ueda W (2006) Dalton Trans 35:4271–4276 Sadakane M, Tsukuma D, Dickmann M, Bassil B, Kortz U, Higashijima M, Ueda W (2006) Dalton Trans 35:4271–4276
81.
go back to reference Hill CL (1998) Chem Rev 98(1) (Issue on “polyoxometalates”) Hill CL (1998) Chem Rev 98(1) (Issue on “polyoxometalates”)
82.
go back to reference Hagrman PJ, Hagrman D, Zubieta J (1999) Angew Chem Int Ed 38:2638–2684 Hagrman PJ, Hagrman D, Zubieta J (1999) Angew Chem Int Ed 38:2638–2684
83.
go back to reference Burkholder E, Zubieta J (2001) Chem Commun 20:2056–2057 Burkholder E, Zubieta J (2001) Chem Commun 20:2056–2057
84.
go back to reference Wu CD, Lu CZ, Zhuang HH, Huang JS (2002) J Am Chem Soc 124:3836–3837 Wu CD, Lu CZ, Zhuang HH, Huang JS (2002) J Am Chem Soc 124:3836–3837
85.
go back to reference Fukaya K, Yamase T (2003) Angew Chem Int Ed 42:654–658 Fukaya K, Yamase T (2003) Angew Chem Int Ed 42:654–658
86.
go back to reference Tan HQ, Li YG, Zhang ZM, Qin C, Wang XL, Wang EB, Su ZM (2007) J Am Chem Soc 129:10066–10067 Tan HQ, Li YG, Zhang ZM, Qin C, Wang XL, Wang EB, Su ZM (2007) J Am Chem Soc 129:10066–10067
87.
go back to reference Thiel J, Ritchie C, Streb C, Long DL, Cronin L (2009) J Am Chem Soc 131:4180–4181 Thiel J, Ritchie C, Streb C, Long DL, Cronin L (2009) J Am Chem Soc 131:4180–4181
88.
go back to reference Pope MT, Müller A (eds) (1994) Polyoxometalates: from platonic solids to anti-retroviral activity. Kluwer, Dordrecht Pope MT, Müller A (eds) (1994) Polyoxometalates: from platonic solids to anti-retroviral activity. Kluwer, Dordrecht
89.
go back to reference Bi L-H, Reicke M, Kortz U, Keita B, Nadjo L, Clark RJ (2004) Inorg Chem 43:3915–3920 Bi L-H, Reicke M, Kortz U, Keita B, Nadjo L, Clark RJ (2004) Inorg Chem 43:3915–3920
90.
go back to reference Hussain F, Bassil BS, Bi L-H, Reicke M, Kortz U (2004) Angew Chem Int Ed 43:3485–3488 Hussain F, Bassil BS, Bi L-H, Reicke M, Kortz U (2004) Angew Chem Int Ed 43:3485–3488
91.
go back to reference Kortz U, Nellutla S, Stowe AC, Dalal NS, Rauwald U, Danquah W, Ravot D (2004) Inorg Chem 43:2308–2317 Kortz U, Nellutla S, Stowe AC, Dalal NS, Rauwald U, Danquah W, Ravot D (2004) Inorg Chem 43:2308–2317
92.
go back to reference Kortz U, Nellutla S, Stowe AC, Dalal NS, Tol VJ, Bassil BS (2004) Inorg Chem 43:144–154 Kortz U, Nellutla S, Stowe AC, Dalal NS, Tol VJ, Bassil BS (2004) Inorg Chem 43:144–154
93.
go back to reference Katsoulis DE, Pope MT (1986) J Chem Soc Chem Comm 15:1186–1188 Katsoulis DE, Pope MT (1986) J Chem Soc Chem Comm 15:1186–1188
94.
go back to reference Faraj M, Hill C (1987) Chem Commun 19:1487–1489 Faraj M, Hill C (1987) Chem Commun 19:1487–1489
95.
go back to reference Neumann R (1989) Chem Commun 18:1324–1325 Neumann R (1989) Chem Commun 18:1324–1325
96.
go back to reference Neumann R, Abu-Gnim C (1990) J Am Chem Soc 112:6025–6031 Neumann R, Abu-Gnim C (1990) J Am Chem Soc 112:6025–6031
97.
go back to reference Lyons JE, Ellis PE Jr, Durante VA, Grasselli RA, Sleight AW (eds) (1991) Stud Surf Sci Catal. Elsevier Scientific, Amsterdam Lyons JE, Ellis PE Jr, Durante VA, Grasselli RA, Sleight AW (eds) (1991) Stud Surf Sci Catal. Elsevier Scientific, Amsterdam
98.
go back to reference Lyons JE, Ellis PE Jr, Myers HK Jr, Suld G, Langdale WA (1989) US 4803187, 7 Feb 1989 Lyons JE, Ellis PE Jr, Myers HK Jr, Suld G, Langdale WA (1989) US 4803187, 7 Feb 1989
99.
go back to reference Harrup MK, Hill CL (1994) Inorg Chem 33:5448–5455 Harrup MK, Hill CL (1994) Inorg Chem 33:5448–5455
100.
go back to reference Mansuy D, Bartoli J, Battioni P, Lyon D, Finke R (1991) J Am Chem Soc 113:7222–7226 Mansuy D, Bartoli J, Battioni P, Lyon D, Finke R (1991) J Am Chem Soc 113:7222–7226
101.
go back to reference Neumann R, Simandi LI (eds) (1991) Dioxygen activation and homogeneous catalytic oxidation. Elsevier Science Publishers, Amsterdam Neumann R, Simandi LI (eds) (1991) Dioxygen activation and homogeneous catalytic oxidation. Elsevier Science Publishers, Amsterdam
102.
go back to reference Mizuno N, Hirose T, Tateishi M, Iwamoto M (1993) Chem Lett 11:1839–1842 Mizuno N, Hirose T, Tateishi M, Iwamoto M (1993) Chem Lett 11:1839–1842
103.
go back to reference Shringarpure P, Patel A (2014) Synth React Inorg Metal-Org Nano-Met Chem (Accepted) Shringarpure P, Patel A (2014) Synth React Inorg Metal-Org Nano-Met Chem (Accepted)
104.
go back to reference Patel A, Patel K (2014) Polyhedron 69:110–118 Patel A, Patel K (2014) Polyhedron 69:110–118
105.
go back to reference Patel K, Shringarpure P, Patel A (2012) Supramol Chem 24:149–156 Patel K, Shringarpure P, Patel A (2012) Supramol Chem 24:149–156
106.
go back to reference Patel K, Shringarpure P, Patel A (2011) Trans Met Chem 36:171–177 Patel K, Shringarpure P, Patel A (2011) Trans Met Chem 36:171–177
107.
go back to reference Shringarpure P, Patel A (2011) J Clus Sci 22:587–601 Shringarpure P, Patel A (2011) J Clus Sci 22:587–601
108.
go back to reference Shringarpure P, Patel A (2009) Inorg Chim Acta 362:3796–3800 Shringarpure P, Patel A (2009) Inorg Chim Acta 362:3796–3800
109.
go back to reference Alekar NA, Indira V, Halligudi SB, Srinivas D, Gopinathan S, Gopinathan C (2000) J Mol Catal A Chem 164:181–189 Alekar NA, Indira V, Halligudi SB, Srinivas D, Gopinathan S, Gopinathan C (2000) J Mol Catal A Chem 164:181–189
110.
go back to reference Zhang J, Tang Y, Li G, Hu C (2005) Appl Catal A Gen 278:251–261 Zhang J, Tang Y, Li G, Hu C (2005) Appl Catal A Gen 278:251–261
111.
go back to reference Nomiya K, Yagishita K, Nemoto Y, Kamataki T (1997) J Mol Catal A Chem 126:43–53 Nomiya K, Yagishita K, Nemoto Y, Kamataki T (1997) J Mol Catal A Chem 126:43–53
112.
go back to reference Misono M, Mizuno N, Inumaru K, Koyano G, Lu X-H (1997) Stud Surf Sci Catal 110:35–42 Misono M, Mizuno N, Inumaru K, Koyano G, Lu X-H (1997) Stud Surf Sci Catal 110:35–42
113.
go back to reference Yang H, Wu Q, Li J, Dai W, Zhang H, Lu D, Gao S, You W (2013) Appl Catal A Gen 457:21–25 Yang H, Wu Q, Li J, Dai W, Zhang H, Lu D, Gao S, You W (2013) Appl Catal A Gen 457:21–25
114.
go back to reference Zhang F, Guo M, Ge H, Wang J (2007) Chinese J Chem Eng 15:895–898 Zhang F, Guo M, Ge H, Wang J (2007) Chinese J Chem Eng 15:895–898
115.
go back to reference Leng Y, Wang J, Zhu D, Shen L, Zhao P, Zhang M (2011) Chem Eng J 173:620–626 Leng Y, Wang J, Zhu D, Shen L, Zhao P, Zhang M (2011) Chem Eng J 173:620–626
116.
go back to reference Laronze N, Marchal-Roch C, Guillou N, Liu FX, Hervé G (2003) J Catal 220:172–181 Laronze N, Marchal-Roch C, Guillou N, Liu FX, Hervé G (2003) J Catal 220:172–181
117.
go back to reference Roch CM, Laronze N, Guillou N, Teze A, Hervé G (2000) Appl Catal A Gen 199:33–44 Roch CM, Laronze N, Guillou N, Teze A, Hervé G (2000) Appl Catal A Gen 199:33–44
118.
go back to reference Tonghao W, Yuchun L, Hongmao Y, Guojia W, Hengbin Z, Shiying H, Yuzi J, Kaiji Z (1989) J Mol Catal 57:193–200 Tonghao W, Yuchun L, Hongmao Y, Guojia W, Hengbin Z, Shiying H, Yuzi J, Kaiji Z (1989) J Mol Catal 57:193–200
119.
go back to reference Akimoto M, Ikeda H, Okabe A, Echigoya E (1984) J Catal 89:196–208 Akimoto M, Ikeda H, Okabe A, Echigoya E (1984) J Catal 89:196–208
120.
go back to reference Lee KY, Oishi S, Igarashi H, Misono M (1997) Catal Today 33:183–189 Lee KY, Oishi S, Igarashi H, Misono M (1997) Catal Today 33:183–189
121.
go back to reference Dimitratos N, Védrine JC (2003) Appl Catal A Gen 256:251–263 Dimitratos N, Védrine JC (2003) Appl Catal A Gen 256:251–263
122.
go back to reference Dimitratos N, Védrine JC (2006) J Mol Catal A Chem 255:184–192 Dimitratos N, Védrine JC (2006) J Mol Catal A Chem 255:184–192
123.
go back to reference Sun M, Zhang J, Cao C, Zhang Q, Wang Y, Wan H (2008) Appl Catal A Gen 349:212–221 Sun M, Zhang J, Cao C, Zhang Q, Wang Y, Wan H (2008) Appl Catal A Gen 349:212–221
124.
go back to reference Shinachi S, Matsushita M, Yamaguchi K, Mizuno N (2005) J Catal 233:81–89 Shinachi S, Matsushita M, Yamaguchi K, Mizuno N (2005) J Catal 233:81–89
125.
go back to reference Centi G, Nieto JL, Iapalucci C, Bruckman K, Serwicka EM (1989) Appl Catal 46:197–212 Centi G, Nieto JL, Iapalucci C, Bruckman K, Serwicka EM (1989) Appl Catal 46:197–212
126.
go back to reference Seki Y, Mizuno N, Misono M (1997) Appl Catal A Gen 158:L47–L51 Seki Y, Mizuno N, Misono M (1997) Appl Catal A Gen 158:L47–L51
127.
go back to reference Seki Y, Min JS, Misono M, Mizuno N (2000) J Phys Chem B 104(25):5940–5944 Seki Y, Min JS, Misono M, Mizuno N (2000) J Phys Chem B 104(25):5940–5944
128.
go back to reference Jing F, Katryniok B, Richard EB, Paul S (2013) Catal Today 203:32–39 Jing F, Katryniok B, Richard EB, Paul S (2013) Catal Today 203:32–39
129.
go back to reference Mizuno N, Han W, Kudo T, Iwamoto M (1996) Stud Surf Sci Catal 101:1001–1010 Mizuno N, Han W, Kudo T, Iwamoto M (1996) Stud Surf Sci Catal 101:1001–1010
130.
go back to reference Mizuno N, Yahiro H (1998) J Phys Chem B 102(2):437–443 Mizuno N, Yahiro H (1998) J Phys Chem B 102(2):437–443
131.
go back to reference Paul S, Chu W, Sultan M, Bordes-Richard E (2010) Sci China Chem 53:2039–2046 Paul S, Chu W, Sultan M, Bordes-Richard E (2010) Sci China Chem 53:2039–2046
132.
go back to reference Jing F, Katryniok B, Dumeignil F, Bordes-Richard E, Paul S (2014) J Catal 309:121–135 Jing F, Katryniok B, Dumeignil F, Bordes-Richard E, Paul S (2014) J Catal 309:121–135
133.
go back to reference Kholdeeva OA, Golovin AV, Makisimovskaya RI, Kozhenikov IV (1992) J Mol Catal 75:235–244 Kholdeeva OA, Golovin AV, Makisimovskaya RI, Kozhenikov IV (1992) J Mol Catal 75:235–244
134.
go back to reference Zhao S, Wang X, Huo M (2010) Appl Catal B: Env 97:127–134 Zhao S, Wang X, Huo M (2010) Appl Catal B: Env 97:127–134
135.
go back to reference Dimitratos N, Pina CD, Falletta E, Bianchi CL, Dal SV, Rossi M (2007) Catal Today 122:307–316 Dimitratos N, Pina CD, Falletta E, Bianchi CL, Dal SV, Rossi M (2007) Catal Today 122:307–316
136.
go back to reference Stytsenko VD, Lee WH, Lee JW (2001) Kinet Catal 42:212–216 Stytsenko VD, Lee WH, Lee JW (2001) Kinet Catal 42:212–216
137.
go back to reference Deusser LM, Petzoldt JC, Gaube JW, Hibst H (1998) Ind Eng Chem Res 37:3230–3236 Deusser LM, Petzoldt JC, Gaube JW, Hibst H (1998) Ind Eng Chem Res 37:3230–3236
138.
go back to reference Zhang H, Yan R, Yang L, Diao Y, Wang L, Zhang S (2013) Ind Eng Chem Res 52:4484–4490 Zhang H, Yan R, Yang L, Diao Y, Wang L, Zhang S (2013) Ind Eng Chem Res 52:4484–4490
139.
go back to reference Zhizhina EG, Simovova MV, Odyakov VF, Matveev KI (2007) Appl Catal A Gen 319:91–97 Zhizhina EG, Simovova MV, Odyakov VF, Matveev KI (2007) Appl Catal A Gen 319:91–97
140.
go back to reference Kala Raj NK, Ramaswamy AV, Manikandan P (2005) J Mol Catal A Chem 227:37–45 Kala Raj NK, Ramaswamy AV, Manikandan P (2005) J Mol Catal A Chem 227:37–45
141.
go back to reference Benlounes O, Cheknoun S, Mansouri S, Rabia C, Hocine J (2011) J Taiwan Inst Chem Eng 42:132–137 Benlounes O, Cheknoun S, Mansouri S, Rabia C, Hocine J (2011) J Taiwan Inst Chem Eng 42:132–137
142.
go back to reference Benadji S, Eloy P, Leonard A, Su B-L, Rabia C, Gaigneaux EM (2012) Micropor Mesopor Mater 154:153–163 Benadji S, Eloy P, Leonard A, Su B-L, Rabia C, Gaigneaux EM (2012) Micropor Mesopor Mater 154:153–163
143.
go back to reference Lingaiah N, Reddy KM, Babu NS, Rao KN, Suryanarayana I, Sai Prasad PS (2006) Catal Commun 7:245–250 Lingaiah N, Reddy KM, Babu NS, Rao KN, Suryanarayana I, Sai Prasad PS (2006) Catal Commun 7:245–250
144.
go back to reference Nagaraju P, Pasha N, Sai Prasad PS, Lingaiah N (2007) Green Chem 9:1126–1129 Nagaraju P, Pasha N, Sai Prasad PS, Lingaiah N (2007) Green Chem 9:1126–1129
145.
go back to reference Reddy KM, Balaraju M, Sai Prasad PS, Suryanarayana I, Lingaiah N (2007) Catal Lett 119:304–310 Reddy KM, Balaraju M, Sai Prasad PS, Suryanarayana I, Lingaiah N (2007) Catal Lett 119:304–310
146.
go back to reference Lingaiah N, Reddy KM, Nagaraju P, Sai Prasad PS, Wachs IE (2008) J Phy Chem C 112:8294–8300 Lingaiah N, Reddy KM, Nagaraju P, Sai Prasad PS, Wachs IE (2008) J Phy Chem C 112:8294–8300
147.
go back to reference Nagaraju P, Balaraju M, Reddy KM, Sai Prasad PS, Lingaiah N (2008) Catal Commun 9:1389–1393 Nagaraju P, Balaraju M, Reddy KM, Sai Prasad PS, Lingaiah N (2008) Catal Commun 9:1389–1393
148.
go back to reference Rao KTV, Rao PSN, Nagaraju P, Sai Prasad PS, Lingaiah N (2009) J Mol Catal A Chem 303:84–89 Rao KTV, Rao PSN, Nagaraju P, Sai Prasad PS, Lingaiah N (2009) J Mol Catal A Chem 303:84–89
149.
go back to reference Nuemann R, Hagit M (1995) J Chem Soc Chem Commun 22:2277–2278 Nuemann R, Hagit M (1995) J Chem Soc Chem Commun 22:2277–2278
150.
go back to reference Mizuno N, Min JS, Taguchi A (2004) Chem Mater 16:2819–2825 Mizuno N, Min JS, Taguchi A (2004) Chem Mater 16:2819–2825
151.
go back to reference Mazari T, Marchal CR, Hocine S, Salhi N, Rabia C (2009) J Nat Gas Chem 18:319–324 Mazari T, Marchal CR, Hocine S, Salhi N, Rabia C (2009) J Nat Gas Chem 18:319–324
152.
go back to reference Hu J, Burns RC (2002) J Mol Catal A Chem 184:451–464 Hu J, Burns RC (2002) J Mol Catal A Chem 184:451–464
153.
go back to reference Palermo V, Romanelli GP, Vázquez PG (2013) J Mol Catal A Chem 373:142–150 Palermo V, Romanelli GP, Vázquez PG (2013) J Mol Catal A Chem 373:142–150
154.
go back to reference Naumann R, Dahan M (1998) Polyhedron 17:3557–3564 Naumann R, Dahan M (1998) Polyhedron 17:3557–3564
155.
go back to reference Khenkin AM, Shimon LJW, Neumann R (2001) Eur J Inorg Chem 3:789–794 Khenkin AM, Shimon LJW, Neumann R (2001) Eur J Inorg Chem 3:789–794
156.
go back to reference Knapp C, Ui T, Nagai K, Mizuno N (2001) Catal Today 71:111–119 Knapp C, Ui T, Nagai K, Mizuno N (2001) Catal Today 71:111–119
157.
go back to reference Tundo P, Romanelli GP, Vázquezc PG, Aricò F (2010) Catal Commun 11:1181–1184 Tundo P, Romanelli GP, Vázquezc PG, Aricò F (2010) Catal Commun 11:1181–1184
158.
go back to reference Karcz R, Pamin K, Poltowicz J, Haber J (2009) Catal Lett 132:159–167 Karcz R, Pamin K, Poltowicz J, Haber J (2009) Catal Lett 132:159–167
159.
go back to reference Duarte TAG, Santos ICMS, Simões MMQ, Neves MGPMS, Cavaleiro AMV, Cavaleiro JAS (2013) Catal Lett 144:104–111 Duarte TAG, Santos ICMS, Simões MMQ, Neves MGPMS, Cavaleiro AMV, Cavaleiro JAS (2013) Catal Lett 144:104–111
Metadata
Title
Introduction
Authors
Anjali Patel
Soyeb Pathan
Copyright Year
2015
DOI
https://doi.org/10.1007/978-3-319-12988-4_1

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