7 Applications Perspectives of Nanodispersed Chalcogenides of Transition. . .
113
27. Suzuki Y et al (1981) Phase relationship on Mo-S system at high temperatures. Mater Res B
16:1085
28. Wilson JA, Yoffe AD (1969) The transition metal dichalcogenides discussion and interpretation
of the observed optical, electrical and structural properties. Adv Phys 18:193
29. Mattheiss LF et al (1973) Energy bands for 2H-NbSe 2 and 2H-MoS 2 . Phys Rev Lett 30:784
30. Wypych F (2002) Dissulfeto de molibdênio, um material multifuncional e surpreendente. Quím
Nova 25:1
31. McMenamin JC, Spicer WE (1972) Photoemission studies of the layered dichalcogenides
NbSe 2 and MoS 2 and a modification of the current band models. Phys Rev Let 29:1501
32. Spiesser M et al (1969) Caractérisation et étude physico-chimique de séléniures et tellurures
non stoechiométriques de molybdène. Bull Soc Chim France 5:1427
33. Bars O et al (1973) Étude structurale de combinaisons sulfurées et séléniées du molybdène:
I. Structure cristalline de Mo 3 Se 4. Chemistry and Structure of Ternary Molybdenum Chalcogenides. J Solid State Chem 6:48
34. Towie LC et al (1966) Dichalcogenides MeX 2 . Science 154:895
35. Greenwood NN, Earnshaw A (1997) Chemistry of the elements, 2nd edn. ButterworthHeinemann, Amsterdam 1384 Ó
36. Brewer L, Lamoreaux RH (1980) Molybdenum: physico-chemical properties of its compounds
and alloys. Atom E R 7:195
37. Parilla P et al (2004) Formation of nanooctahedra in molybdenum disulfide and molybdenum
diselenide using pulsed vapor transport. J Phys Chem 108:6197
38. Hu KH et al (2010) The effect of morphology and size on the photocatalytic properties of
MoS 2 . Reac Kinet Mech Cat 100:153
39. Shi Y et al (2013) Ordered mesoporous crystalline mose 2 material with efficient visible-lightdriven photocatalytic activity and enhanced lithium storage performance. Adv Func Mater
23:1832
40. Qiao XQ et al (2016) Equilibrium and kinetic studies on MB adsorption by ultrathin 2D MoS 2
nanosheets. RSC Adv 6:11631
41. Yan AX et al (2014) Incorporating polyoxometalates into a porous MOF greatly improves its
selective adsorption of cationic dyes. Chem Eur J 20:6927
42. Chevrel R, Sergent M (1982) Chemistry and structure of ternary molybdenum chalcogenides.
In: Fischer O, Maple MB (eds) Superconductivity in ternary compounds i, Topics in current
physics Vol. 32. Springer, Berlin
43. Coehoorn R, Haas C (1987) Electronic structure of MoSe 2 , MoS 2 , and WSe 2 . Band-structure
calculations and photoelectron spectroscop. Phys Rev B 35:6195
44. Williams AR et al (1979) Cohesive properties of metallic compounds: augmented-sphericalwave calculations. Phys Rev B 19:6094
45. Krivosheeva AV (2016) Prospective semiconducting compounds and nanostructures for optoelectronics, photovoltaics and spintronics. Integr technol En Effic 3(97):13
113
27. Suzuki Y et al (1981) Phase relationship on Mo-S system at high temperatures. Mater Res B
16:1085
28. Wilson JA, Yoffe AD (1969) The transition metal dichalcogenides discussion and interpretation
of the observed optical, electrical and structural properties. Adv Phys 18:193
29. Mattheiss LF et al (1973) Energy bands for 2H-NbSe 2 and 2H-MoS 2 . Phys Rev Lett 30:784
30. Wypych F (2002) Dissulfeto de molibdênio, um material multifuncional e surpreendente. Quím
Nova 25:1
31. McMenamin JC, Spicer WE (1972) Photoemission studies of the layered dichalcogenides
NbSe 2 and MoS 2 and a modification of the current band models. Phys Rev Let 29:1501
32. Spiesser M et al (1969) Caractérisation et étude physico-chimique de séléniures et tellurures
non stoechiométriques de molybdène. Bull Soc Chim France 5:1427
33. Bars O et al (1973) Étude structurale de combinaisons sulfurées et séléniées du molybdène:
I. Structure cristalline de Mo 3 Se 4. Chemistry and Structure of Ternary Molybdenum Chalcogenides. J Solid State Chem 6:48
34. Towie LC et al (1966) Dichalcogenides MeX 2 . Science 154:895
35. Greenwood NN, Earnshaw A (1997) Chemistry of the elements, 2nd edn. ButterworthHeinemann, Amsterdam 1384 Ó
36. Brewer L, Lamoreaux RH (1980) Molybdenum: physico-chemical properties of its compounds
and alloys. Atom E R 7:195
37. Parilla P et al (2004) Formation of nanooctahedra in molybdenum disulfide and molybdenum
diselenide using pulsed vapor transport. J Phys Chem 108:6197
38. Hu KH et al (2010) The effect of morphology and size on the photocatalytic properties of
MoS 2 . Reac Kinet Mech Cat 100:153
39. Shi Y et al (2013) Ordered mesoporous crystalline mose 2 material with efficient visible-lightdriven photocatalytic activity and enhanced lithium storage performance. Adv Func Mater
23:1832
40. Qiao XQ et al (2016) Equilibrium and kinetic studies on MB adsorption by ultrathin 2D MoS 2
nanosheets. RSC Adv 6:11631
41. Yan AX et al (2014) Incorporating polyoxometalates into a porous MOF greatly improves its
selective adsorption of cationic dyes. Chem Eur J 20:6927
42. Chevrel R, Sergent M (1982) Chemistry and structure of ternary molybdenum chalcogenides.
In: Fischer O, Maple MB (eds) Superconductivity in ternary compounds i, Topics in current
physics Vol. 32. Springer, Berlin
43. Coehoorn R, Haas C (1987) Electronic structure of MoSe 2 , MoS 2 , and WSe 2 . Band-structure
calculations and photoelectron spectroscop. Phys Rev B 35:6195
44. Williams AR et al (1979) Cohesive properties of metallic compounds: augmented-sphericalwave calculations. Phys Rev B 19:6094
45. Krivosheeva AV (2016) Prospective semiconducting compounds and nanostructures for optoelectronics, photovoltaics and spintronics. Integr technol En Effic 3(97):13
