122
5 C–C Bond Formation via the Condensation …
46. Voskrenskaya EN, Roguleva VG, Anshits AG (1995) Oxidant activation over structural defects
of oxide catalyst in oxidation of methane coupling. Catal Rev -Sci Eng 37:101–143
47. Takita Y, Lunsford JH (1979) Surface reactions of oxygen ions. 3. Oxidation of alkanes by
O 3
– on magnesium oxide. J Phys Chem 83:683–688
48. Takita Y, Iwamoto M, Lunsford JH (1980) Surface reactions of oxygen ions. 4. Oxidation of
alkanes by O 3
– on magnesium oxide. J Phys Chem 84:1710–1712
49. Oliva C, Bonoldi L, Cappelli S, Fabbrini L, Rossetti I, Forai L (2005) Effect of preparation
parameters on SrTiO(3 ± δ) catalyst for the flameless combustion of methane. J Mol Catal
A: Chemical 226:33–40
50. Shvets VA, Vorotyntsev VM, Kazanskii VB (1969) ESR spectra of surface complexes formed
during the adsorption of oxygen on vanadium pentoxide deposited silica gel. Kinet Katal
10:356–363
51. Kazanskii VB (1977) Possible mechanism of heterogeneous chain generation with the
preparation of O – surface radical during catalytic oxidation on oxide. Kinet Katal 18:43–54
52. Sofranko JA, Leonard JJ, Jones CA (1987) The oxidative conversion of methane to higher
hydrocarbons. J Catal 103:302–310
53. Jones CA, Leonard JJ, Sofranko JA (1987) The oxidative conversion of methane to higher
hydrocarbons over alkali-promoted Mn/SiO 2 . J Catal 103:311–319
54. Sofranko JA, Leonard JJ, Jones CA, Gaffney AM, Withers HP (1988) Catalytic oxidative
coupling of methane over sodium-promoted Mn/SiO 2 and Mn/MgO. Catal Today 3:127–135
55. Fang X, Li S, Lin J, Chu Y (1992) Oxidative coupling of methane on tungsten-manganese
catalysts. Fenzi Cuihua 6:427–433
56. Fang X, Li S, Lin J, Gu J, Yan D (1992) Preparation and characterization of tungstenmanganese catalysts for oxidative coupling of methane. Fenzi Cuihua 6:255–262
57. Jiang Z, Fang X, Yu C, Li S, He J, Luo X (1992) Manganese (III) oxide-sodium tungstate
(Na 2 WO 4 )/silicon dioxide catalyst for oxidative coupling of methane. I. Surface dispel son
state and oxide/support interaction. Fenzi Cuihua 6:477–480
58. Jiang ZC, Yu CJ, Fang XP, Li SB, Wang HL (1993) Oxide/support interaction and surface
reconstruction in the Na 2 WO 4 /SiO 2 system. J Phys Chem 97:12870–12875
59. Ji S, Xiao TC, Li SB, Xu CZ, Hou RL, Coleman KS, Green MLH (2002) The relation
ship between the structure and the performance of Na-W-Mn/SiO 2 catalyst for the oxidative
coupling of methane. Appl Catal A: General 225:271–284
60. Yildiz M, Simm U, Otemba T, Aksu Y, Kailasam K, Thomas A, Schomäcker R, Arndt S (2014)
Support material variation for the MnO-Na 2 WO 4 /SiO 2 catalyst. Catal Today 228:5–14
61. Sinev M, Ponomareva E, Sinev I, Lomonosov V, Gordienko Y, Fattakhova Z, Shaskin D
(2019) Oxygen pathways in oxidative coupling of methane and related processes case study:
NaWMn/SiO 2 catalyst. Catal Tody 333:36–46
62. Arndt S, Otremba T, Simon U, Yildiz M, Schubert H, Schomäcker R (2012) MnNa 2 WO 4 /SiO 2 as catalysts for the oxidative coupling of methane. What is really known?
Appl Catal A: General 425–426:53–61
63. Fleisher V, Simon U, Parishan S, Colmenares MG, Görke O, Gurlo A, Riedel W, Thum L,
Schmidt J, Risse T, Dinse KP, Schomäcker R (2018) Na 2 WO 4 /Mn/SiO 2 catalyst composition
in the oxidative coupling of methane by chemical looping experiments. J Catal 360:102–117
64. Lomonosov VI, Gordienko YA, Sinev MY, Rogov VA, Sadykov VA (2018) Thermochemical
properties of the lattice oxygen in W, Mn-containing mixed oxide catalysts for the oxidative
coupling of methane. Russ J Phys Chem A 92:430–437
65. Gu S, Oh HS, Choi JW, Jae J, Ghoi J, Ha JM (2018) Effects of metal or metal oxide additives on
oxidative coupling of methane using Na 2 WO 4 /SiO 2 catalysts: reducibility of metal additives
to manipulate the catalytic activity. Appl Catal A: General 562:114–119
66. Riedel W, Thum L, Möser J, Fleische V, Simon U, Siemensmeyer K, Schnegg A,
Schomäcker R, Risse T, Dinse KP (2018) Magnetic properties of reduced and reoxidized
Mn-–Na 2 WO 4 /SiO 2 : a catalyst for oxidative coupling of methane (OCM). J Phys Chem C
112:22605–22614
5 C–C Bond Formation via the Condensation …
46. Voskrenskaya EN, Roguleva VG, Anshits AG (1995) Oxidant activation over structural defects
of oxide catalyst in oxidation of methane coupling. Catal Rev -Sci Eng 37:101–143
47. Takita Y, Lunsford JH (1979) Surface reactions of oxygen ions. 3. Oxidation of alkanes by
O 3
– on magnesium oxide. J Phys Chem 83:683–688
48. Takita Y, Iwamoto M, Lunsford JH (1980) Surface reactions of oxygen ions. 4. Oxidation of
alkanes by O 3
– on magnesium oxide. J Phys Chem 84:1710–1712
49. Oliva C, Bonoldi L, Cappelli S, Fabbrini L, Rossetti I, Forai L (2005) Effect of preparation
parameters on SrTiO(3 ± δ) catalyst for the flameless combustion of methane. J Mol Catal
A: Chemical 226:33–40
50. Shvets VA, Vorotyntsev VM, Kazanskii VB (1969) ESR spectra of surface complexes formed
during the adsorption of oxygen on vanadium pentoxide deposited silica gel. Kinet Katal
10:356–363
51. Kazanskii VB (1977) Possible mechanism of heterogeneous chain generation with the
preparation of O – surface radical during catalytic oxidation on oxide. Kinet Katal 18:43–54
52. Sofranko JA, Leonard JJ, Jones CA (1987) The oxidative conversion of methane to higher
hydrocarbons. J Catal 103:302–310
53. Jones CA, Leonard JJ, Sofranko JA (1987) The oxidative conversion of methane to higher
hydrocarbons over alkali-promoted Mn/SiO 2 . J Catal 103:311–319
54. Sofranko JA, Leonard JJ, Jones CA, Gaffney AM, Withers HP (1988) Catalytic oxidative
coupling of methane over sodium-promoted Mn/SiO 2 and Mn/MgO. Catal Today 3:127–135
55. Fang X, Li S, Lin J, Chu Y (1992) Oxidative coupling of methane on tungsten-manganese
catalysts. Fenzi Cuihua 6:427–433
56. Fang X, Li S, Lin J, Gu J, Yan D (1992) Preparation and characterization of tungstenmanganese catalysts for oxidative coupling of methane. Fenzi Cuihua 6:255–262
57. Jiang Z, Fang X, Yu C, Li S, He J, Luo X (1992) Manganese (III) oxide-sodium tungstate
(Na 2 WO 4 )/silicon dioxide catalyst for oxidative coupling of methane. I. Surface dispel son
state and oxide/support interaction. Fenzi Cuihua 6:477–480
58. Jiang ZC, Yu CJ, Fang XP, Li SB, Wang HL (1993) Oxide/support interaction and surface
reconstruction in the Na 2 WO 4 /SiO 2 system. J Phys Chem 97:12870–12875
59. Ji S, Xiao TC, Li SB, Xu CZ, Hou RL, Coleman KS, Green MLH (2002) The relation
ship between the structure and the performance of Na-W-Mn/SiO 2 catalyst for the oxidative
coupling of methane. Appl Catal A: General 225:271–284
60. Yildiz M, Simm U, Otemba T, Aksu Y, Kailasam K, Thomas A, Schomäcker R, Arndt S (2014)
Support material variation for the MnO-Na 2 WO 4 /SiO 2 catalyst. Catal Today 228:5–14
61. Sinev M, Ponomareva E, Sinev I, Lomonosov V, Gordienko Y, Fattakhova Z, Shaskin D
(2019) Oxygen pathways in oxidative coupling of methane and related processes case study:
NaWMn/SiO 2 catalyst. Catal Tody 333:36–46
62. Arndt S, Otremba T, Simon U, Yildiz M, Schubert H, Schomäcker R (2012) MnNa 2 WO 4 /SiO 2 as catalysts for the oxidative coupling of methane. What is really known?
Appl Catal A: General 425–426:53–61
63. Fleisher V, Simon U, Parishan S, Colmenares MG, Görke O, Gurlo A, Riedel W, Thum L,
Schmidt J, Risse T, Dinse KP, Schomäcker R (2018) Na 2 WO 4 /Mn/SiO 2 catalyst composition
in the oxidative coupling of methane by chemical looping experiments. J Catal 360:102–117
64. Lomonosov VI, Gordienko YA, Sinev MY, Rogov VA, Sadykov VA (2018) Thermochemical
properties of the lattice oxygen in W, Mn-containing mixed oxide catalysts for the oxidative
coupling of methane. Russ J Phys Chem A 92:430–437
65. Gu S, Oh HS, Choi JW, Jae J, Ghoi J, Ha JM (2018) Effects of metal or metal oxide additives on
oxidative coupling of methane using Na 2 WO 4 /SiO 2 catalysts: reducibility of metal additives
to manipulate the catalytic activity. Appl Catal A: General 562:114–119
66. Riedel W, Thum L, Möser J, Fleische V, Simon U, Siemensmeyer K, Schnegg A,
Schomäcker R, Risse T, Dinse KP (2018) Magnetic properties of reduced and reoxidized
Mn-–Na 2 WO 4 /SiO 2 : a catalyst for oxidative coupling of methane (OCM). J Phys Chem C
112:22605–22614
