186
S. Majidi et al.
References and Future Readings
1. Davoy X, Gellé A, Lebreton J-C, Tabuteau H, Soldera A, Szymczyk A, Ghoufi A (2018) High
water flux with ions sieving in a desalination 2D sub-nanoporous boron nitride material. ACS
Omega 3:6305–6310
2. Gu Z, Liu S, Dai X, Chen S, Yang Z, Zhou R (2018) Nanoporous Boron nitride for high
efficient water desalination, bioRxiv 500876
3. Lei W, Portehault D, Liu D, Qin S, Chen Y (2013) Porous boron nitride nanosheets for
effective water cleaning. Nature Commun 4:1777
4. Zhang K, Feng Y, Wang F, Yang Z, Wang J (2017) Two dimensional hexagonal boron nitride
(2D-hBN): synthesis, properties and applications. J Mater Chem C 5:11992–12022
5. Li X, Wu X, Zeng XC, Yang J (2012) Band-gap engineering via tailored line defects in
boron-nitride nanoribbons, sheets, and nanotubes. ACS Nano 6:4104–4112
6. Azamat J, Sattary BS, Khataee A, Joo SW (2015) Removal of a hazardous heavy metal from
aqueous solution using functionalized graphene and boron nitride nanosheets: Insights from
simulations. J Mol Graph Model 61:13–20
7. Giovannetti G, Khomyakov PA, Brocks G, Kelly PJ, Van Den Brink J (2007) Substrate-induced
band gap in graphene on hexagonal boron nitride: Ab initio density functional calculations.
Phys Rev B 76:
8. Meric I, Dean CR, Petrone N, Wang L, Hone J, Kim P, Shepard KL (2013) Graphene fieldeffect transistors based on boron–nitride dielectrics. Proc IEEE 101:1609–1619
9. Gao R, Yin L, Wang C, Qi Y, Lun N, Zhang L, Liu Y-X, Kang L, Wang X (2009) High-yield
synthesis of boron nitride nanosheets with strong ultraviolet cathodoluminescence emission.
J Phys Chem C 113:15160–15165
10. Zhi C, Bando Y, Tang C, Huang Q, Golberg D (2008) Boron nitride nanotubes: functionalization and composites. J Mater Chem 18:3900–3908
11. Wang Y, Shi Z, Yin J (2011) Boron nitride nanosheets: large-scale exfoliation in methanesulfonic acid and their composites with polybenzimidazole. J Mater Chem 21:11371–11377
12. Tang C, Bando Y, Liu C, Fan S, Zhang J, Ding X, Golberg D (2006) Thermal conductivity of
nanostructured boron nitride materials. J Phys Chem B 110:10354–10357
13. Azamat J, Khataee A, Sadikoglu F (2016) Separation of carbon dioxide and nitrogen gases
through modified boron nitride nanosheets as a membrane: insights from molecular dynamics
simulations. RSC Advances 6:94911–94920
14. Watanabe K, Taniguchi T, Kanda H (2004) Direct-bandgap properties and evidence for
ultraviolet lasing of hexagonal boron nitride single crystal. Nat Mater 3:404
15. Pacile D, Meyer J, Girit Ç, Zettl A (2008) The two-dimensional phase of boron nitride:
few-atomic-layer sheets and suspended membranes. Appl Phys Lett 92:
16. Britnell L, Gorbachev RV, Jalil R, Belle BD, Schedin F, Katsnelson MI, Eaves L, Morozov SV,
Mayorov AS, Peres NM (2012) Electron tunneling through ultrathin boron nitride crystalline
barriers. Nano Lett 12:1707–1710
17. Neek-Amal M, Beheshtian J, Sadeghi A, Michel K, Peeters F (2013) Boron nitride monolayer:
a strain-tunable nanosensor. J Phys Chem C 117:13261–13267
18. Pakdel A, Bando Y, Golberg D (2014) Nano boron nitride flatland. Chem Soc Rev 43:934–959
19. Yin J, Li J, Hang Y, Yu J, Tai G, Li X, Zhang Z, Guo W (2016) Boron nitride nanostructures:
fabrication, functionalization and applications. Small 12:2942–2968
20. Wang H, Zhao Y, Xie Y, Ma X, Zhang X (2017) Recent progress in synthesis of
two-dimensional hexagonal boron nitride. J Semicond 38:
21. Xu M, Liang T, Shi M, Chen H (2013) Graphene-like two-dimensional materials. Chem Rev
113:3766–3798
22. Sperber JL (2016) Investigations of hexagonal boron nitride: bulk crystals and atomically-thin
two dimensional layers, Kansas State University
23. Novoselov KS, Jiang D, Schedin F, Booth T, Khotkevich V, Morozov S, Geim AK (2005)
Two-dimensional atomic crystals. Proc Natl Acad Sci 102:10451–10453
S. Majidi et al.
References and Future Readings
1. Davoy X, Gellé A, Lebreton J-C, Tabuteau H, Soldera A, Szymczyk A, Ghoufi A (2018) High
water flux with ions sieving in a desalination 2D sub-nanoporous boron nitride material. ACS
Omega 3:6305–6310
2. Gu Z, Liu S, Dai X, Chen S, Yang Z, Zhou R (2018) Nanoporous Boron nitride for high
efficient water desalination, bioRxiv 500876
3. Lei W, Portehault D, Liu D, Qin S, Chen Y (2013) Porous boron nitride nanosheets for
effective water cleaning. Nature Commun 4:1777
4. Zhang K, Feng Y, Wang F, Yang Z, Wang J (2017) Two dimensional hexagonal boron nitride
(2D-hBN): synthesis, properties and applications. J Mater Chem C 5:11992–12022
5. Li X, Wu X, Zeng XC, Yang J (2012) Band-gap engineering via tailored line defects in
boron-nitride nanoribbons, sheets, and nanotubes. ACS Nano 6:4104–4112
6. Azamat J, Sattary BS, Khataee A, Joo SW (2015) Removal of a hazardous heavy metal from
aqueous solution using functionalized graphene and boron nitride nanosheets: Insights from
simulations. J Mol Graph Model 61:13–20
7. Giovannetti G, Khomyakov PA, Brocks G, Kelly PJ, Van Den Brink J (2007) Substrate-induced
band gap in graphene on hexagonal boron nitride: Ab initio density functional calculations.
Phys Rev B 76:
8. Meric I, Dean CR, Petrone N, Wang L, Hone J, Kim P, Shepard KL (2013) Graphene fieldeffect transistors based on boron–nitride dielectrics. Proc IEEE 101:1609–1619
9. Gao R, Yin L, Wang C, Qi Y, Lun N, Zhang L, Liu Y-X, Kang L, Wang X (2009) High-yield
synthesis of boron nitride nanosheets with strong ultraviolet cathodoluminescence emission.
J Phys Chem C 113:15160–15165
10. Zhi C, Bando Y, Tang C, Huang Q, Golberg D (2008) Boron nitride nanotubes: functionalization and composites. J Mater Chem 18:3900–3908
11. Wang Y, Shi Z, Yin J (2011) Boron nitride nanosheets: large-scale exfoliation in methanesulfonic acid and their composites with polybenzimidazole. J Mater Chem 21:11371–11377
12. Tang C, Bando Y, Liu C, Fan S, Zhang J, Ding X, Golberg D (2006) Thermal conductivity of
nanostructured boron nitride materials. J Phys Chem B 110:10354–10357
13. Azamat J, Khataee A, Sadikoglu F (2016) Separation of carbon dioxide and nitrogen gases
through modified boron nitride nanosheets as a membrane: insights from molecular dynamics
simulations. RSC Advances 6:94911–94920
14. Watanabe K, Taniguchi T, Kanda H (2004) Direct-bandgap properties and evidence for
ultraviolet lasing of hexagonal boron nitride single crystal. Nat Mater 3:404
15. Pacile D, Meyer J, Girit Ç, Zettl A (2008) The two-dimensional phase of boron nitride:
few-atomic-layer sheets and suspended membranes. Appl Phys Lett 92:
16. Britnell L, Gorbachev RV, Jalil R, Belle BD, Schedin F, Katsnelson MI, Eaves L, Morozov SV,
Mayorov AS, Peres NM (2012) Electron tunneling through ultrathin boron nitride crystalline
barriers. Nano Lett 12:1707–1710
17. Neek-Amal M, Beheshtian J, Sadeghi A, Michel K, Peeters F (2013) Boron nitride monolayer:
a strain-tunable nanosensor. J Phys Chem C 117:13261–13267
18. Pakdel A, Bando Y, Golberg D (2014) Nano boron nitride flatland. Chem Soc Rev 43:934–959
19. Yin J, Li J, Hang Y, Yu J, Tai G, Li X, Zhang Z, Guo W (2016) Boron nitride nanostructures:
fabrication, functionalization and applications. Small 12:2942–2968
20. Wang H, Zhao Y, Xie Y, Ma X, Zhang X (2017) Recent progress in synthesis of
two-dimensional hexagonal boron nitride. J Semicond 38:
21. Xu M, Liang T, Shi M, Chen H (2013) Graphene-like two-dimensional materials. Chem Rev
113:3766–3798
22. Sperber JL (2016) Investigations of hexagonal boron nitride: bulk crystals and atomically-thin
two dimensional layers, Kansas State University
23. Novoselov KS, Jiang D, Schedin F, Booth T, Khotkevich V, Morozov S, Geim AK (2005)
Two-dimensional atomic crystals. Proc Natl Acad Sci 102:10451–10453
