112
I. Ivanenko et al.
References
1. Novoselov KS et al (2004) Electric field effect in atomically thin carbon films. Science 306:666
2. Fujishima A et al (2000) Titanium dioxide photocatalysis. J Photochem Photobiol C: Photochem Rev 1:1
3. Jovi´ c F et al (2011) Heterogena fotokataliza: osnove i primjena za obradu oneˇ ciš´ cenog zraka.
Kem Ind 60:387
4. Bykanova VV et al (2012) Technological aspects of the application of photocatalysts in the
industry: an overview. Integr Technol En Eff 4(1):151
5. Colmenares JC (2004) Nanostructured photocatalysts and their applications in the photocatalytic transformation of lignocellulosic biomass: an overview. Materials 2:2228
6. Mauroa AD et al (2017) ZnO for application in photocatalysis: from thin films to nanostructures. Mater Sci Semicond Proc 69:44
7. Mills A et al (2002) A web-based overview of semiconductor photochemstry-based current
commercial applications. J Photochem Photobiol 152:233
8. Dontsova T et al (2012) Synthesis and characterization of titanium (IV) oxide from various
precursors. Springer Proc Phys 167:275
9. Mills A (2012) Photocatalytic oxidation of toluene in an NMR tube. J Photochem Photobiol A
233:34
10. Cojocaru B et al (2011) Influence of gold particle size on the photocata- lytic activity for
acetone oxidation of Au/TiO 2 catalysts prepared by dc-magnetron sputtering. Appl Catal B
107:140
11. Ivanenko IN et al (2016) Low-temperature synthesis, structure-sorption characterisics and
photocatalytic activity of TiO 2 nanostructures. Springer: Phys Chem Water Treat Proc/J Wat
Chem Technol 37(1):14
12. Ballari MM et al (2010) NO x photocatalytic degradation employing concrete pavement
containing titanium dioxide. Appl Catal B 95:245
13. Ni M et al (2006) A review and recent developments in photocatalytic water-splitting using
TiO 2 for hydrogen production. Renew Sust Energ Rev 11:401
14. Lu X-H et al (2011) Monodisperse CeO 2 /CdS heterostructured spheres: one-pot synthesis and
enhanced photocatalytic hydrogen activity. RSC Adv 1:1207
15. Morales-Guio C et al (2014) Nanostructured hydrotreating catalysts for electrochemical
hydrogen evolution. Chem Soc Rev 43:6555
16. Li X et al (2015) Engineering heterogeneous semiconductors for solar water splitting. J Mater
Chem A 3:2485
17. Deng J et al (2014) High-performance hydrogen evolution electrocatalysis by layer-controlled
MoS 2 nanosheets. RSC Adv 4:34733
18. Priscilla BP et al (2015) Two-dimensional dichalcogenides for light-harvesting applications.
Nano Today 10(2):128
19. Afanasiev P et al (2008) Synthetic approaches to the molybdenum sulfide materials. Compt
Rend Chim 11:159
20. Brenta JR et al (2017) Synthetic approaches to two-dimensional transition metal dichalcogenide nanosheets. Prog Mater Sci 89:411
21. Radisavljevic B et al (2011) Single-layer MoS 2 transistors. Nature Nanotech 6:147
22. http://www.tribology-abc.com/abc/solidlub.htm
23. http://www.drilube.co.jp/english/product/molybdenum.html
24. Petkov V et al (2002) Structure of nanocrystalline materials using atomic pair distribution
function analysis: study of LiMoS 2 . Phys Rev B 65:92
25. Bell RE et al (1957) Preparation and characterization of a new crystalline form of molybdenum
disulfide. J Am Chem S 79:3351
26. Py M et al (1983) Structural destabilization induced by lithium intercalation in MoS 2 and
related compounds. C J Phys 61:76
I. Ivanenko et al.
References
1. Novoselov KS et al (2004) Electric field effect in atomically thin carbon films. Science 306:666
2. Fujishima A et al (2000) Titanium dioxide photocatalysis. J Photochem Photobiol C: Photochem Rev 1:1
3. Jovi´ c F et al (2011) Heterogena fotokataliza: osnove i primjena za obradu oneˇ ciš´ cenog zraka.
Kem Ind 60:387
4. Bykanova VV et al (2012) Technological aspects of the application of photocatalysts in the
industry: an overview. Integr Technol En Eff 4(1):151
5. Colmenares JC (2004) Nanostructured photocatalysts and their applications in the photocatalytic transformation of lignocellulosic biomass: an overview. Materials 2:2228
6. Mauroa AD et al (2017) ZnO for application in photocatalysis: from thin films to nanostructures. Mater Sci Semicond Proc 69:44
7. Mills A et al (2002) A web-based overview of semiconductor photochemstry-based current
commercial applications. J Photochem Photobiol 152:233
8. Dontsova T et al (2012) Synthesis and characterization of titanium (IV) oxide from various
precursors. Springer Proc Phys 167:275
9. Mills A (2012) Photocatalytic oxidation of toluene in an NMR tube. J Photochem Photobiol A
233:34
10. Cojocaru B et al (2011) Influence of gold particle size on the photocata- lytic activity for
acetone oxidation of Au/TiO 2 catalysts prepared by dc-magnetron sputtering. Appl Catal B
107:140
11. Ivanenko IN et al (2016) Low-temperature synthesis, structure-sorption characterisics and
photocatalytic activity of TiO 2 nanostructures. Springer: Phys Chem Water Treat Proc/J Wat
Chem Technol 37(1):14
12. Ballari MM et al (2010) NO x photocatalytic degradation employing concrete pavement
containing titanium dioxide. Appl Catal B 95:245
13. Ni M et al (2006) A review and recent developments in photocatalytic water-splitting using
TiO 2 for hydrogen production. Renew Sust Energ Rev 11:401
14. Lu X-H et al (2011) Monodisperse CeO 2 /CdS heterostructured spheres: one-pot synthesis and
enhanced photocatalytic hydrogen activity. RSC Adv 1:1207
15. Morales-Guio C et al (2014) Nanostructured hydrotreating catalysts for electrochemical
hydrogen evolution. Chem Soc Rev 43:6555
16. Li X et al (2015) Engineering heterogeneous semiconductors for solar water splitting. J Mater
Chem A 3:2485
17. Deng J et al (2014) High-performance hydrogen evolution electrocatalysis by layer-controlled
MoS 2 nanosheets. RSC Adv 4:34733
18. Priscilla BP et al (2015) Two-dimensional dichalcogenides for light-harvesting applications.
Nano Today 10(2):128
19. Afanasiev P et al (2008) Synthetic approaches to the molybdenum sulfide materials. Compt
Rend Chim 11:159
20. Brenta JR et al (2017) Synthetic approaches to two-dimensional transition metal dichalcogenide nanosheets. Prog Mater Sci 89:411
21. Radisavljevic B et al (2011) Single-layer MoS 2 transistors. Nature Nanotech 6:147
22. http://www.tribology-abc.com/abc/solidlub.htm
23. http://www.drilube.co.jp/english/product/molybdenum.html
24. Petkov V et al (2002) Structure of nanocrystalline materials using atomic pair distribution
function analysis: study of LiMoS 2 . Phys Rev B 65:92
25. Bell RE et al (1957) Preparation and characterization of a new crystalline form of molybdenum
disulfide. J Am Chem S 79:3351
26. Py M et al (1983) Structural destabilization induced by lithium intercalation in MoS 2 and
related compounds. C J Phys 61:76
