石墨烯及相关二维材料显微结构表征
上QQ阅读APP看本书,新人免费读10天
设备和账号都新为新人

参考文献

[1]Landau L D.Zur Theorie der phasenumwandlungen II[J].Phys.Z.Sowjetunion,1937,11(545):26-35.

[2]Peierls R.Quelques propriétés typiques des corps solides[J].Ann.Inst.H.Poincaré,1935,5(3):177-222.

[3]Venables J A,Spiller G D T,Hanbucken M.Nucleation and growth of thin films[J].Rep.Prog.Phys.,1984,47(4):399.

[4]Zinke-Allmang M,Feldman L C,Grabow M H.Clustering on surfaces[J].Surf.Sci.Rep.,1992,16(8):377-463.

[5]Novoselov K S,Geim A K,Morozov S V,et al.Electric field effect in atomically thin carbon films[J].Science,2004,306(5696):666-669.

[6]Wallace P R.The band theory of graphite[J].Phys.Rev.,1947,71(9):622-634.

[7]Boehm H P,Setton R,Stumpp E.Nomenclature and terminology of graphite intercalation compounds[J].Carbon,1986,24(2):241-245.

[8]McClure J W.Diamagnetism of graphite[J].Phys.Rev.,1956,104(3):666-671.

[9]Semenoff G W.Condensed-matter simulation of a three-dimensional anomaly[J].Phys.Rev.Lett.,1984,53(26):2449-2452.

[10]Boehm H P,Clauss A,Fischer G,et al.Surface properties of extremely thin graphite lamellae[C]// Proceedings of the fifth conference on carbon.New York:Pergamon Press,1962,1:73-80.

[11]Oshima C,Bannai E,Tanaka T,et al.Carbon layer on lanthanum hexaboride(100)Surface[J].Jpn.J.Appl.Phys.,1977,16(6):965-969.

[12]Lu X,Yu M,Huang H,et al.Tailoring graphite with the goal of achieving single sheets[J].Nanotechnology,1999,10(3):269-272.

[13]Novoselov K S,Jiang D,Schedin F,et al.Two-dimensional atomic crystals[J].Proc.Natl.Acad.Sci.U.S.A.,2005,102(30):10451-10453.

[14]Berger C,Song Z,Li T,et al.Ultrathin epitaxial graphite:2D electron gas properties and a route toward graphene-based nanoelectronics[J].J.Phys.Chem.B,2004,108(52):19912-19916.

[15]Zhang Y,Tan Y-W,Stormer H L,et al.Experimental observation of the quantum Hall effect and Berry’s phase in graphene[J].Nature,2005,438:201-204.

[16]Meyer J C,Geim A K,Katsnelson M I,et al.The structure of suspended graphene sheets[J].Nature,2007,446(7131):60-63.

[17]Meyer J C,Kisielowski C,Erni R,et al.Direct imaging of lattice atoms and topological defects in graphene membranes[J].Nano Lett.,2008,8(11):3582-3586.

[18]Suenaga K,Koshino M.Atom-by-atom spectroscopy at graphene edge[J].Nature,2010,468(7327):1088-1090.

[19]Naguib M,Mochalin V N,Barsoum M W,et al.MXenes:a new family of two-dimensional materials[J].Adv.Mater.,2014,26(7):992-1005.

[20]Elias D,Nair R,Mohiuddin T,et al.Control of graphene's properties by reversible hydrogenation:evidence for graphane[J].Science,2009,323(5914):610-613.

[21]Nair R R,Ren W,Jalil R,et al.Fluorographene:a two-dimensional counterpart of teflon[J].Small,2010,6(24):2877-2884.

[22]Vogt P,De Padova P,Quaresima C,et al.Silicene:compelling experimental evidence for graphenelike two-dimensional silicon[J].Phys.Rev.Lett.,2012,108(15):155501.

[23]Dávila M,Xian L,Cahangirov S,et al.Germanene:a novel two-dimensional germanium allotrope akin to graphene and silicene[J].New J.Phys.,2014,16(9):095002.

[24]Li L,Yu Y,Ye G J,et al.Black phosphorus field-effect transistors[J].Nat.Nanotechnol.,2014,9(5):372-377.

[25]Partoens B,Peeters F.From graphene to graphite:Electronic structure around the K point[J].Phys.Rev.B,2006,74(7):075404.

[26]Lee C,Wei X,Kysar J W,et al.Measurement of the Elastic Properties and Intrinsic Strength of Monolayer Graphene[J].Science,2008,321(5887):385-388.

[27]Neto A H C.The electronic properties of graphene[J].Rev.Mod.Phys.,2007,81(1):109-162.

[28]Bolotin K I,Sikes K J,Jiang Z,et al.Ultrahigh electron mobility in suspended graphene[J].Solid State Commun.,2008,146(9):351-355.

[29]Novoselov K S,Geim A K,Morozov S V,et al.Two-dimensional gas of massless Dirac fermions in graphene[J].Nature,2005,438:197-200.

[30]Novoselov K S,Mccann E,Morozov S V,et al.Unconventional quantum Hall effect and Berry's phase of 2π in bilayer graphene[J].Nat.Phys.,2006,2(2):177-180

[31]Katsnelson M I,Novoselov K S,Geim A K.Chiral tunnelling and the Klein paradox in graphene[J].Nat.Phys.,2006,2(9):620-625.

[32]Katsnelson M I.Zitterbewegung,chirality,and minimal conductivity in graphene[J].Eur.Phys.J.B,2006,51(2):157-160.

[33]Balandin A,Ghosh S,Bao W,et al.Superior thermal conductivity of single-layer graphene[J].Nano Lett.,2008,8(3):902-907.

[34]Cai W,Moore A L,Zhu Y,et al.Thermal transport in suspended and supported monolayer graphene grown by chemical vapor deposition[J].Nano Lett.,2010,10(5):1645-1651.

[35]Ghosh S,Bao W,Nika D L,et al.Dimensional crossover of thermal transport in few-layer graphene[J].Nat.Mater.,2010,9:555-558.

[36]Li X S,Zhu Y W,Cai W W et al.Transfer of large-area graphene films for high-performance transparent conductive electrodes[J].Nano Lett.,2009,9(12):4359-4363

[37]Ni Z H,Wang H M,Kasim J,et al.Graphene thickness determination using reflection and contrast spectroscopy[J].Nano Lett.,2007,7(9):2758-2763.

[38]Latil S,Henrard L.Charge carriers in few-layer graphene films[J].Phys.Rev.Lett.,2006,97(3):036803.

[39]Charlier J C,Gonze X,Michenaud J P.First-principles study of the electronic properties of graphite[J].Phys.Rev.B,1991,43(6):4579-4589.

[40]Liu Z,Suenaga K,Harris P J F,et al.Open and closed edges of graphene layers[J].Phys.Rev.Lett.,2009,102(1):015501.

[41]Norimatsu W,Kusunoki M.Selective formation of ABC-stacked graphene layers on SiC(0001)[J].Phys.Rev.B,2010,81(16):161410.

[42]Warner J H,Mukai M,Kirkland A I.Atomic structure of ABC rhombohedral stacked trilayer graphene[J].ACS Nano,2012,6(6):5680-5686.

[43]Varchon F,Mallet P,Magaud L,et al.Rotational disorder in few-layer graphene films on 6H-SiC (000-1):A scanning tunneling microscopy study[J].Phys.Rev.B,2008,77(16):165415.

[44]Hass J,Varchon F,Millán-Otoya J E,et al.Why multilayer graphene on 4H-SiC(000-1)behaves like a single sheet of graphene[J].Phys.Rev.Lett.,2008,100(12):125504.

[45]He H,Klinowski J,Forster M,et al.A new structural model for graphite oxide[J].Chem.Phys.Lett.,1998,287(1):53-56.

[46]Cai W,Piner R D,Stadermann F J,et al.Synthesis and solid-state NMR structural characterization of 13C-labeled graphite oxide[J].Science,2008,321(5897):1815-1817.

[47]Sofo J O,Chaudhari A S,Barber G D.Graphane:A two-dimensional hydrocarbon[J].Phys.Rev.B,2007,75(15):153401.

[48]Song L,Ci L,Lu H,et al.Large scale growth and characterization of atomic hexagonal boron nitride layers[J].Nano Lett.,2010,10(8):3209-3215.

[49]Golberg D,Bando Y,Huang Y,et al.Boron nitride nanotubes and nanosheets[J].ACS Nano,2010,4(6):2979-2993.

[50]Zeng H,Zhi C,Zhang Z,et al.“White graphenes”:boron nitride nanoribbons via boron nitride nanotube unwrapping[J].Nano Lett.,2010,10(12):5049-5055.

[51]Warner J H,Rummeli M H,Bachmatiuk A,et al.Atomic resolution imaging and topography of boron nitride sheets produced by chemical exfoliation[J].ACS Nano,2010,4(3):1299-1304.

[52]Joensen P,Frindt R F,Morrison S R.Single-layer MoS2[J].Mater.Res.Bull.,1986,21(4):457-461.

[53]Eda G,Fujita T,Yamaguchi H,et al.Coherent atomic and electronic heterostructures of single-layer MoS2[J].ACS Nano,2012,6(8):7311-7317.

[54]Mak K F,Lee C,Hone J,et al.Atomically thin MoS2:a new eirect-gap semiconductor[J].Phys.Rev.Lett.,2010,105(13):136805.

[55]Liu C-C,Jiang H,Yao Y.Low-energy effective Hamiltonian involving spin-orbit coupling in silicene and two-dimensional germanium and tin[J].Phys.Rev.B,2011,84(19):195430.

[56]Zhu F-f,Chen W-j,Xu Y,et al.Epitaxial growth of two-dimensional stanene[J].Nat.Mater.,2015,14(10):1020-1025.

[57]Zhang S,Yan Z,Li Y,et al.Atomically Thin arsenene and antimonene:semimetal-semiconductor and indirect-direct band-gap transitions[J].Angew.Chem.,2015,127(10):3155-3158.

[58]Ji J,Song X,Liu J,et al.Two-dimensional antimonene single crystals grown by van der Waals epitaxy[J].Nat.Commun.,2016,7:13352.

[59]Xu F,Ge B,Chen J,et al.Scalable shear-exfoliation of high-quality phosphorene nanoflakes with reliable electrochemical cycleability in nano batteries[J].2D Mater.,2016,3(2):025005.

[60]Mannix A J,Zhou X-F,Kiraly B,et al.Synthesis of borophenes:Anisotropic,two-dimensional boron polymorphs[J].Science,2015,350(6267):1513-1516.