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刘慧娟等:层状氮化硼纳米片的制备及表征 ·1549 1385 [27]Luo W,Wang Y B,Hitz E,et al.Solution processed boron nitride [13]Kim KK,Hsu A,Jia X T,et al.Synthesis of monolayer hexagonal nanosheets:synthesis,assemblies and emerging applications.Adv boron nitride on Cu foil using chemical vapor deposition.Nano Funct Mater,2017,27(31):1701450 Lem,2012,12(1):161 [28]Xi X L,Nie Z R,Yang J C,et al.Preparation and characterization [14]Deng YX,Luo Z,Conrad N J,et al.Black phosphorus-monolayer of Ce-W composite nanopowder.Mat Sci Eng A,2005,394(1-2): MoS,van der Waals heterojunction p-n diode.ACS Nano,2014, 360 8(8):8292 [29]Luan WL,Gao L,Guo J K.Study on drying stage of nanoscale [15]Cai Q R,Scullion D,Gan W,et al.High thermal conductivity of powder preparation.Nanostruct Mater,1998,10(7):1119 high-quality monolayer boron nitride and its thermal expansion [30]Tu X F,Zhou Y K.Song Y J.Freeze-drying synthesis of three- Sci Adv,2019,5(6):eaav0129 dimensional porous LiFePO modified with well-dispersed [16]Pacile D,Meyer J C,Girit CO,et al.The two-dimensional phase nitrogen-doped carbon nanotubes for high-performance lithium-ion of boron nitride:few-atomic-layer sheets and suspended batteries.Appl SufSci,017.400:329 membranes.App/Phys Lett,2008,92(13):133107 [31]Guo D Y,Zhao Y J,Ling C,et al.Vacuum freeze-drying assisted [17]Li X L,Hao X P,Zhao M W,et al.Exfoliation of hexagonal boron preparation of spherical AlB2 powders with ultrafine nitride by molten hydroxides.Ady Mater,2013,25(15):2200 microstructure.Ceram Int,2018,44(6):6451 [18]Li Q,Yang T,Yang Q F,et al.Porous hexagonal boron nitride [32]Annie D,Chandramouli V,Anthonysamy S,et al.Freeze drying vs whiskers fabricated at low temperature for effective removal of microwave drying-methods for synthesis of sinteractive thoria organic pollutants from water.Ceram Int,2016,42(7):8754 powders.J Nucl Mater,2017,484:51 [19]Gibb A L,Alem N,Chen J H,et al.Atomic resolution imaging of [33]Liu R P,Xu TT,Wang C A.A review of fabrication strategies and grain boundary defects in monolayer chemical vapor deposition- applications of porous ceramics prepared by freeze-casting grown hexagonal boron nitride.J Am Chem Soc,2013,135(18): method.Ceram Int,2016,42(2):2907 6758 [34]Lin J,Xu LL.Huang Y,et al.Ultrafine porous boron nitride [20]Cao L,Emami S,Lafdi K.Large-scale exfoliation of hexagonal nanofibers synthesized via a freeze-drying and pyrolysis process boron nitride nanosheets in liquid phase.Mater Express,2014 and their adsorption properties.RSCdv,2016,6(2):1253 4(2):165 [35]Yuan S D.Preparation and Properties of BN Nano [21]Zhao D,Ke R L,Zou X,et al.Research progress on preparation Materials[Dissertation].Wuhan:Huazhong University of Science technology of boron nitride nanosheets.J Funct Mater,2016 and Technology,2009 12(47):12071 (袁颂东.氨化硼纳米材料的制备及性能研究学位论文】.武汉: (赵迪,柯瑞林,邹雄,等.氨化硼纳米片制备方法研究进展.功 华中科技大学,2009) 能材料,2016,12(47):12071) [36]Wen Y,Shang X Z.Dong J,et al.Ultraclean and large-area [22]Hou X M,Qiu PL.Yang T,et al.Synthesis of titanium nitride monolayer hexagonal boron nitride on Cu foil using chemical nanopowder at low temperature from the combustion synthesized vapor deposition.Nanotechnology,2015,26(27):275601 precursor and the thermal stability.J Alloys Compd,2014,615: [37]Gorbachev R V,Riaz I,Nair RR,et al.Hunting for monolayer 838 boron nitride:optical and Raman signatures.Small,2011,7(4): [23]Wang X F,Liu J C,Hou F,et al.Synthesis of ZrC-SiC powders 465 from hybrid liquid precursors with improved oxidation resistance. [38]Tay R Y,Griep M H,Mallick G.et al.Growth of large single- J Am Ceram Soc,2015,98(1):197 crystalline two-dimensional boron nitride hexagons on [24]Liu D,Lei WW,Qin S,et al.Template-free synthesis of electropolished copper.Nano Lert,2014,14(2):839 functional 3D BN architecture for removal of dyes from water.Sci [39]Yang M Y,Zhang B,Zhang X,et al.Study on the geometrical Rep-UK,2014,4:4453 structures,electronic structures,magnetic properties and edge [25]Li J Q,Zhou J,Hao H J,et al.Preparation of hexagonal boron effects of graphene and hexagonal boron nitride nanosheets.J nitride nanosheet.J Shaanxi Univ Sci Technol,2015,33(6):40 4 tom Mol Phys,2018,35(4):673 (李军奇,周健,郝红娟,等.六方氮化硼纳米片的制备.陕西科 (杨明宇,张勃,张旭,等.石墨烯和六方氮化硼纳米片的几何结 技大学学报:自然科学版,2015,33(6):40) 构、电子结构、磁性及边缘特性研究.原子与分子物理学报 [26]Wu P W,Zhu W S,Chao Y H,et al.A template-free solvent- 2018.35(4):673) mediated synthesis of high surface area boron nitride nanosheets [40]Gao Y,Ren W C,Ma T,et al.Repeated and controlled growth of for aerobic oxidative desulfurization.Chem Commu,2016, monolayer,bilayer and few-layer hexagonal boron nitride on Pt 52(1):144 foils.ACS Nano,2013,7(6):51991385 Kim K K, Hsu A, Jia X T, et al. Synthesis of monolayer hexagonal boron  nitride  on  Cu  foil  using  chemical  vapor  deposition. Nano Lett, 2012, 12(1): 161 [13] Deng Y X, Luo Z, Conrad N J, et al. Black phosphorus-monolayer MoS2 van  der  Waals  heterojunction  p-n  diode. ACS Nano,  2014, 8(8): 8292 [14] Cai Q R, Scullion D, Gan W, et al. High thermal conductivity of high-quality  monolayer  boron  nitride  and  its  thermal  expansion. Sci Adv, 2019, 5(6): eaav0129 [15] Pacile D, Meyer J C, Girit Ç Ö, et al. The two-dimensional phase of  boron  nitride:  few-atomic-layer  sheets  and  suspended membranes. Appl Phys Lett, 2008, 92(13): 133107 [16] Li X L, Hao X P, Zhao M W, et al. Exfoliation of hexagonal boron nitride by molten hydroxides. Adv Mater, 2013, 25(15): 2200 [17] Li  Q,  Yang  T,  Yang  Q  F,  et  al.  Porous  hexagonal  boron  nitride whiskers  fabricated  at  low  temperature  for  effective  removal  of organic pollutants from water. Ceram Int, 2016, 42(7): 8754 [18] Gibb A L, Alem N, Chen J H, et al. Atomic resolution imaging of grain  boundary  defects  in  monolayer  chemical  vapor  deposition￾grown hexagonal boron nitride. J Am Chem Soc, 2013, 135(18): 6758 [19] Cao  L,  Emami  S,  Lafdi  K.  Large-scale  exfoliation  of  hexagonal boron  nitride  nanosheets  in  liquid  phase. Mater Express,  2014, 4(2): 165 [20] Zhao D, Ke R L, Zou X, et al. Research progress on preparation technology  of  boron  nitride  nanosheets. J Funct Mater,  2016, 12(47): 12071 (赵迪, 柯瑞林, 邹雄, 等. 氮化硼纳米片制备方法研究进展. 功 能材料, 2016, 12(47):12071 ) [21] Hou  X  M,  Qiu  P  L,  Yang  T,  et  al.  Synthesis  of  titanium  nitride nanopowder at low temperature from the combustion synthesized precursor  and  the  thermal  stability. J Alloys Compd,  2014,  615: 838 [22] Wang X F, Liu J C, Hou F, et al. Synthesis of ZrC-SiC powders from hybrid liquid precursors with improved oxidation resistance. J Am Ceram Soc, 2015, 98(1): 197 [23] Liu  D,  Lei  W  W,  Qin  S,  et  al.  Template-free  synthesis  of functional 3D BN architecture for removal of dyes from water. Sci Rep-UK, 2014, 4: 4453 [24] Li  J  Q,  Zhou  J,  Hao  H  J,  et  al.  Preparation  of  hexagonal  boron nitride nanosheet. J Shaanxi Univ Sci Technol, 2015, 33(6): 40 (李军奇, 周健, 郝红娟, 等. 六方氮化硼纳米片的制备. 陕西科 技大学学报:自然科学版, 2015, 33(6):40 ) [25] Wu  P  W,  Zhu  W  S,  Chao  Y  H,  et  al.  A  template-free  solvent￾mediated  synthesis  of  high  surface  area  boron  nitride  nanosheets for  aerobic  oxidative  desulfurization. Chem Commun,  2016, 52(1): 144 [26] Luo W, Wang Y B, Hitz E, et al. Solution processed boron nitride nanosheets: synthesis, assemblies and emerging applications. Adv Funct Mater, 2017, 27(31): 1701450 [27] Xi X L, Nie Z R, Yang J C, et al. Preparation and characterization of Ce-W composite nanopowder. Mat Sci Eng A, 2005, 394(1-2): 360 [28] Luan W L, Gao L, Guo J K. Study on drying stage of nanoscale powder preparation. Nanostruct Mater, 1998, 10(7): 1119 [29] Tu  X  F,  Zhou  Y  K,  Song  Y  J.  Freeze-drying  synthesis  of  three￾dimensional  porous  LiFePO4 modified  with  well-dispersed nitrogen-doped carbon nanotubes for high-performance lithium-ion batteries. Appl Surf Sci, 2017, 400: 329 [30] Guo D Y, Zhao Y J, Ling C, et al. Vacuum freeze-drying assisted preparation  of  spherical  AlB2 powders  with  ultrafine microstructure. Ceram Int, 2018, 44(6): 6451 [31] Annie D, Chandramouli V, Anthonysamy S, et al. Freeze drying vs microwave  drying-methods  for  synthesis  of  sinteractive  thoria powders. J Nucl Mater, 2017, 484: 51 [32] Liu R P, Xu T T, Wang C A. A review of fabrication strategies and applications  of  porous  ceramics  prepared  by  freeze-casting method. Ceram Int, 2016, 42(2): 2907 [33] Lin  J,  Xu  L  L,  Huang  Y,  et  al.  Ultrafine  porous  boron  nitride nanofibers  synthesized via a  freeze-drying  and  pyrolysis  process and their adsorption properties. RSC Adv, 2016, 6(2): 1253 [34] Yuan  S  D. Preparation and Properties of BN Nano Materials[Dissertation].  Wuhan:  Huazhong  University  of  Science and Technology, 2009 (袁颂东. 氮化硼纳米材料的制备及性能研究[学位论文]. 武汉: 华中科技大学, 2009) [35] Wen  Y,  Shang  X  Z,  Dong  J,  et  al.  Ultraclean  and  large-area monolayer  hexagonal  boron  nitride  on  Cu  foil  using  chemical vapor deposition. Nanotechnology, 2015, 26(27): 275601 [36] Gorbachev  R  V,  Riaz  I,  Nair  R  R,  et  al.  Hunting  for  monolayer boron  nitride:  optical  and  Raman  signatures. Small,  2011,  7(4): 465 [37] Tay  R  Y,  Griep  M  H,  Mallick  G,  et  al.  Growth  of  large  single￾crystalline  two-dimensional  boron  nitride  hexagons  on electropolished copper. Nano Lett, 2014, 14(2): 839 [38] Yang  M  Y,  Zhang  B,  Zhang  X,  et  al.  Study  on  the  geometrical structures,  electronic  structures,  magnetic  properties  and  edge effects  of  graphene  and  hexagonal  boron  nitride  nanosheets. J Atom Mol Phys, 2018, 35(4): 673 (杨明宇, 张勃, 张旭, 等. 石墨烯和六方氮化硼纳米片的几何结 构、电子结构、磁性及边缘特性研究. 原子与分子物理学报, 2018, 35(4):673 ) [39] Gao Y, Ren W C, Ma T, et al. Repeated and controlled growth of monolayer,  bilayer  and  few-layer  hexagonal  boron  nitride  on  Pt foils. ACS Nano, 2013, 7(6): 5199 [40] 刘慧娟等: 层状氮化硼纳米片的制备及表征 · 1549 ·
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