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Erschienen in: Journal of Nanoparticle Research 2/2013

01.02.2013 | Research Paper

Recent trend in graphene for optoelectronics

verfasst von: Yu-Bin Chen, John S. Liu, Pang Lin

Erschienen in: Journal of Nanoparticle Research | Ausgabe 2/2013

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Abstract

This study analyzes the scientific knowledge diffusion paths of graphene for optoelectronics (GFO), where graphene offers wide applications due to its thinness, high conductivity, excellent transparency, chemical stability, robustness, and flexibility. Our investigation is based on the main path analysis which establishes the citation links among the literature data in order to trace the significant sequence of knowledge development in this emerging field. We identify the main development paths of GFO up to the year 2012, along which a series of influential papers in this field are identified. The main path graph shows that knowledge diffusion occurs in key subareas, including reduced graphene oxide, chemical vapor deposition, and exfoliation techniques, which are developed for the preparation and applications of GFO. The applications cover solar cells, laser devices, sensing devices, and LCD. In addition, the main theme of GFO research evolves in sequence from small-graphene-sample preparation, to large-scale film growth, and onto prototype device fabrication. This evolution reflects a strong industrial demand for a new transparent–conductive film technology.

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Fußnoten
1
Graphene AND (optoelectronic* OR photonic* OR “transparent electrode*” OR “transparent conduct*” OR photovoltaic* OR photodetect* OR “touch panel*” OR “touch screen*” OR “liquid crystal*” OR “flexible display*” OR “ultrafast laser*” OR “fiber laser*” OR absorber* OR “terahertz device*” OR “terahertz emission” OR “optical limit*” OR “light-emitting device*” OR “optical device*” OR “ultrafast optical*” OR photoconduct* OR photocurrent* OR “solar cell*” OR photoluminescence* OR “indium tin oxide” OR “ITO” OR “thin-film transistor”) (*denotes the wildcard used in most search engines).
 
Literatur
Zurück zum Zitat Allen MJ, Tung VC, Kaner RB (2010) Honeycomb Carbon: a review of graphene. Chem Rev 110(1):132–145CrossRef Allen MJ, Tung VC, Kaner RB (2010) Honeycomb Carbon: a review of graphene. Chem Rev 110(1):132–145CrossRef
Zurück zum Zitat Bao QL, Zhang H, Wang Y, Ni ZH, Yan YL, Shen ZX, Loh KP, Tang DY (2009) Atomic-layer graphene as a saturable absorber for ultrafast pulsed lasers. Adv Funct Mater 19(19):3077–3083CrossRef Bao QL, Zhang H, Wang Y, Ni ZH, Yan YL, Shen ZX, Loh KP, Tang DY (2009) Atomic-layer graphene as a saturable absorber for ultrafast pulsed lasers. Adv Funct Mater 19(19):3077–3083CrossRef
Zurück zum Zitat Batagelj V (2003) Efficient algorithms for citation network analysis, University of Ljubljana, Institute of Mathematics, Physics and Mechanics, Preprint series, 841–897 Batagelj V (2003) Efficient algorithms for citation network analysis, University of Ljubljana, Institute of Mathematics, Physics and Mechanics, Preprint series, 841–897
Zurück zum Zitat Batagelj V, Mrvar A (1998) Pajek-program for large network analysis. Connections 21(2):47–57 Batagelj V, Mrvar A (1998) Pajek-program for large network analysis. Connections 21(2):47–57
Zurück zum Zitat Becerril HA, Mao J, Liu Z, Stoltenberg RM, Bao Z, Chen Y (2008) Evaluation of solution-processed reduced graphene oxide films as transparent conductors. ACS Nano 2(3):463–470CrossRef Becerril HA, Mao J, Liu Z, Stoltenberg RM, Bao Z, Chen Y (2008) Evaluation of solution-processed reduced graphene oxide films as transparent conductors. ACS Nano 2(3):463–470CrossRef
Zurück zum Zitat Bi H, Huang FQ, Liang J, Xie XM, Jiang MH (2011a) Transparent conductive graphene films synthesized by ambient Pressure chemical vapor deposition used as the front electrode of CdTe solar cells. Adv Mater 23(28):3202CrossRef Bi H, Huang FQ, Liang J, Xie XM, Jiang MH (2011a) Transparent conductive graphene films synthesized by ambient Pressure chemical vapor deposition used as the front electrode of CdTe solar cells. Adv Mater 23(28):3202CrossRef
Zurück zum Zitat Bi H, Huang FQ, Liang J, Xie XM, Tang YF, Lu XJ, Xie XM, Jiang MH (2011b) Large-scale preparation of highly conductive three dimensional graphene and its applications in CdTe solar cells. J Mater Chem 21(43):17366–17370CrossRef Bi H, Huang FQ, Liang J, Xie XM, Tang YF, Lu XJ, Xie XM, Jiang MH (2011b) Large-scale preparation of highly conductive three dimensional graphene and its applications in CdTe solar cells. J Mater Chem 21(43):17366–17370CrossRef
Zurück zum Zitat Blake P, Brimicombe PD, Nair RR, Booth TJ, Jiang D, Schedin F, Ponomarenko LA, Morozov SV, Gleeson HF, Hill EW, Geim AK, Novoselov KS (2008) Graphene-based liquid crystal device. Nano Lett 8(6):1704–1708CrossRef Blake P, Brimicombe PD, Nair RR, Booth TJ, Jiang D, Schedin F, Ponomarenko LA, Morozov SV, Gleeson HF, Hill EW, Geim AK, Novoselov KS (2008) Graphene-based liquid crystal device. Nano Lett 8(6):1704–1708CrossRef
Zurück zum Zitat Bockrath M, Cobden DH, McEuen PL, Chopra NG, Zettl A, Thess A, Smalley RE (1997) Single-electron transport in ropes of carbon nanotubes. Science 275(5308):1922–1925CrossRef Bockrath M, Cobden DH, McEuen PL, Chopra NG, Zettl A, Thess A, Smalley RE (1997) Single-electron transport in ropes of carbon nanotubes. Science 275(5308):1922–1925CrossRef
Zurück zum Zitat Bonaccorso F, Sun Z, Hasan T, Ferrari AC (2010) Graphene photonics and optoelectronics. Nat Photonics 4:611–622CrossRef Bonaccorso F, Sun Z, Hasan T, Ferrari AC (2010) Graphene photonics and optoelectronics. Nat Photonics 4:611–622CrossRef
Zurück zum Zitat Bornmann L, Daniel HD (2005) Does the h-index for ranking of scientists really work? Scientometrics 65(3):391–392CrossRef Bornmann L, Daniel HD (2005) Does the h-index for ranking of scientists really work? Scientometrics 65(3):391–392CrossRef
Zurück zum Zitat Brumfiel G (2012) Britain’s big bet on graphene. Nature 488:140–141CrossRef Brumfiel G (2012) Britain’s big bet on graphene. Nature 488:140–141CrossRef
Zurück zum Zitat De S, Coleman JN (2010) Are there fundamental limitations on the sheet resistance and transmittance of thin graphene films? ACS Nano 4(5):2713–2720CrossRef De S, Coleman JN (2010) Are there fundamental limitations on the sheet resistance and transmittance of thin graphene films? ACS Nano 4(5):2713–2720CrossRef
Zurück zum Zitat Dikin DA, Stankovich S, Zimney EJ, Piner RD, Dommett GHB, Evmenenko G, Nguyen SBT, Ruoff RS (2007) Preparation and characterization of graphene oxide paper. Nature 448(7152):457–460CrossRef Dikin DA, Stankovich S, Zimney EJ, Piner RD, Dommett GHB, Evmenenko G, Nguyen SBT, Ruoff RS (2007) Preparation and characterization of graphene oxide paper. Nature 448(7152):457–460CrossRef
Zurück zum Zitat Eda G, Chhowalla M (2010) Chemically derived graphene oxide: towards large-area thin-film electronics and optoelectronics. Adv Mater 22:2392–2415CrossRef Eda G, Chhowalla M (2010) Chemically derived graphene oxide: towards large-area thin-film electronics and optoelectronics. Adv Mater 22:2392–2415CrossRef
Zurück zum Zitat Eda G, Fanchini G, Chhowalla M (2008) Large-area ultrathin films of reduced graphene oxide as a transparent and flexible electronic material. Nat Nanotechnol 3(5):270–274CrossRef Eda G, Fanchini G, Chhowalla M (2008) Large-area ultrathin films of reduced graphene oxide as a transparent and flexible electronic material. Nat Nanotechnol 3(5):270–274CrossRef
Zurück zum Zitat Egghe L (2006) Theory and practice of the g-index. Scientometrics 69(1):131–152CrossRef Egghe L (2006) Theory and practice of the g-index. Scientometrics 69(1):131–152CrossRef
Zurück zum Zitat Eigler S (2009) A new parameter based on graphene for characterizing transparent conductive materials. Carbon 47(12):2936–2939CrossRef Eigler S (2009) A new parameter based on graphene for characterizing transparent conductive materials. Carbon 47(12):2936–2939CrossRef
Zurück zum Zitat Garfield E, Sher IH, Torpie RJ (1964) The use of citation data in writing the history of science. The Institute for Scientific Information, Philadelphia Garfield E, Sher IH, Torpie RJ (1964) The use of citation data in writing the history of science. The Institute for Scientific Information, Philadelphia
Zurück zum Zitat Geim AK (2009) Graphene: status and prospects. Science 324:1530–1534CrossRef Geim AK (2009) Graphene: status and prospects. Science 324:1530–1534CrossRef
Zurück zum Zitat Gunes F, Shin HJ, Biswas C, Kim ES, Chae SJ, Choi JY, Lee YH (2010) Layer-by-layer doping of few-layer graphene film. ACS Nano 4(8):4595–4600CrossRef Gunes F, Shin HJ, Biswas C, Kim ES, Chae SJ, Choi JY, Lee YH (2010) Layer-by-layer doping of few-layer graphene film. ACS Nano 4(8):4595–4600CrossRef
Zurück zum Zitat Hayashi H, Lightcap IV, Tsujimoto M, Takano M, Umeyama T, Kamat PV, Imahori H (2011) Electron transfer cascade by organic/inorganic ternary composites of porphyrin, zinc oxide nanoparticles, and reduced graphene oxide on a tin oxide electrode that exhibits efficient photocurrent generation. J Am Chem Soc 133(20):7684–7687CrossRef Hayashi H, Lightcap IV, Tsujimoto M, Takano M, Umeyama T, Kamat PV, Imahori H (2011) Electron transfer cascade by organic/inorganic ternary composites of porphyrin, zinc oxide nanoparticles, and reduced graphene oxide on a tin oxide electrode that exhibits efficient photocurrent generation. J Am Chem Soc 133(20):7684–7687CrossRef
Zurück zum Zitat He Q, Sudibya HG, Yin Z, Wu S, Li H, Boey F, Huang W, Chen P, Zhang H (2010) Centimeter-long and large-scale micropatterns of reduced graphene oxide films: fabrication and sensing applications. ACS Nano 6:3201–3208CrossRef He Q, Sudibya HG, Yin Z, Wu S, Li H, Boey F, Huang W, Chen P, Zhang H (2010) Centimeter-long and large-scale micropatterns of reduced graphene oxide films: fabrication and sensing applications. ACS Nano 6:3201–3208CrossRef
Zurück zum Zitat Hernandez Y, Nicolosi V, Lotya M, Blighe FM, Sun Z, De S, McGovern IT, Holland B, Byrne M, Gun’ko YK, Boland JJ, Niraj P, Duesberg G, Krishnamurthy S, Goodhue R, Hutchison J, Scardaci V, Ferrari AC, Coleman JN (2008) High-yield production of graphene by liquid-phase exfoliation of graphite. Nat Nanotechnol 3(9):563–568CrossRef Hernandez Y, Nicolosi V, Lotya M, Blighe FM, Sun Z, De S, McGovern IT, Holland B, Byrne M, Gun’ko YK, Boland JJ, Niraj P, Duesberg G, Krishnamurthy S, Goodhue R, Hutchison J, Scardaci V, Ferrari AC, Coleman JN (2008) High-yield production of graphene by liquid-phase exfoliation of graphite. Nat Nanotechnol 3(9):563–568CrossRef
Zurück zum Zitat Hirsch JE (2005) An index to quantify an individual’s scientific research output. PNAS 102(46):16569–16572CrossRef Hirsch JE (2005) An index to quantify an individual’s scientific research output. PNAS 102(46):16569–16572CrossRef
Zurück zum Zitat Hummon NP, Doreian P (1989) Connectivity in a citation network: the development of DNA theory. Soc Netw 11(1):39–63CrossRef Hummon NP, Doreian P (1989) Connectivity in a citation network: the development of DNA theory. Soc Netw 11(1):39–63CrossRef
Zurück zum Zitat Jung I, Dikin DA, Piner RD, Ruoff RS (2008) Tunable electrical conductivity of individual graphene oxide sheets reduced at “low” temperatures. Nano Lett 8(12):4283–4287CrossRef Jung I, Dikin DA, Piner RD, Ruoff RS (2008) Tunable electrical conductivity of individual graphene oxide sheets reduced at “low” temperatures. Nano Lett 8(12):4283–4287CrossRef
Zurück zum Zitat Kamat PV (2011) Graphene-based nanoassemblies for energy conversion. J Phys Chem Lett 2(3):242–251CrossRef Kamat PV (2011) Graphene-based nanoassemblies for energy conversion. J Phys Chem Lett 2(3):242–251CrossRef
Zurück zum Zitat Kim KS, Zhao Y, Jang H, Lee SY, Kim JM, Kim KS, Ahn JH, Kim P, Choi JY, Hong BH (2009) Large-scale pattern growth of graphene films for stretchable transparent electrodes. Nature 457(7230):706–710CrossRef Kim KS, Zhao Y, Jang H, Lee SY, Kim JM, Kim KS, Ahn JH, Kim P, Choi JY, Hong BH (2009) Large-scale pattern growth of graphene films for stretchable transparent electrodes. Nature 457(7230):706–710CrossRef
Zurück zum Zitat Li D, Mueller MB, Gilje S, Kaner RB, Wallace GG (2008a) Processable aqueous dispersions of graphene nanosheets. Nat Nanotechnol 3(2):101–105CrossRef Li D, Mueller MB, Gilje S, Kaner RB, Wallace GG (2008a) Processable aqueous dispersions of graphene nanosheets. Nat Nanotechnol 3(2):101–105CrossRef
Zurück zum Zitat Li X, Zhang G, Bai X, Sun X, Wang X, Wang E, Dai H (2008b) Highly conducting graphene sheets and Langmuir-Blodgett films. Nat Nanotechnol 3(9):538–542CrossRef Li X, Zhang G, Bai X, Sun X, Wang X, Wang E, Dai H (2008b) Highly conducting graphene sheets and Langmuir-Blodgett films. Nat Nanotechnol 3(9):538–542CrossRef
Zurück zum Zitat Li X, Cai W, An J, Kim S, Nah J, Yang D, Piner R, Velamakanni A, Jung I, Tutuc E, Banerjee SK, Colombo L, Ruoff RS (2009a) Large-area synthesis of high-quality and uniform graphene films on copper foils. Science 324(5932):1312–1314CrossRef Li X, Cai W, An J, Kim S, Nah J, Yang D, Piner R, Velamakanni A, Jung I, Tutuc E, Banerjee SK, Colombo L, Ruoff RS (2009a) Large-area synthesis of high-quality and uniform graphene films on copper foils. Science 324(5932):1312–1314CrossRef
Zurück zum Zitat Li X, Zhu Y, Cai W, Borysiak M, Han B, Chen D, Piner Rd D, Colombo L, Ruoff RS (2009b) Transfer of large-area graphene films for high-performance transparent conductive electrodes. Nano Lett 9(12):4359–4363CrossRef Li X, Zhu Y, Cai W, Borysiak M, Han B, Chen D, Piner Rd D, Colombo L, Ruoff RS (2009b) Transfer of large-area graphene films for high-performance transparent conductive electrodes. Nano Lett 9(12):4359–4363CrossRef
Zurück zum Zitat Liu JS, Lu LYY (2012) An integrated approach for the main pace analysis: the development of the Hirch index as an example. J Am Soc Inf Sci Technol 63(3):528–542CrossRef Liu JS, Lu LYY (2012) An integrated approach for the main pace analysis: the development of the Hirch index as an example. J Am Soc Inf Sci Technol 63(3):528–542CrossRef
Zurück zum Zitat Liu J, Wang YG, Qu ZS, Zheng LH, Su LB, Xu J (2012) Graphene oxide absorber for 2 μm passive mode-locking Tm:YAlO3 laser. Laser Phys Lett 9(1):15–19CrossRef Liu J, Wang YG, Qu ZS, Zheng LH, Su LB, Xu J (2012) Graphene oxide absorber for 2 μm passive mode-locking Tm:YAlO3 laser. Laser Phys Lett 9(1):15–19CrossRef
Zurück zum Zitat Mingers J (2009) Measuring the research contribution of management academics using the Hirsch-index. J Oper Res Soc 60(9):1143–1153CrossRef Mingers J (2009) Measuring the research contribution of management academics using the Hirsch-index. J Oper Res Soc 60(9):1143–1153CrossRef
Zurück zum Zitat Nair RR et al (2008) Fine structure constant defines transparency of graphene. Science 320:1308CrossRef Nair RR et al (2008) Fine structure constant defines transparency of graphene. Science 320:1308CrossRef
Zurück zum Zitat Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA (2004) Electric field effect in atomically thin carbon films. Science 306:666–669CrossRef Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA (2004) Electric field effect in atomically thin carbon films. Science 306:666–669CrossRef
Zurück zum Zitat Novoselov KS, Jiang D, Schedin F, Booth TJ, Khotkevich VV, Morozov SV, Geim AK (2005) Two-dimensional atomic crystals. Proc Nat Acad Sci U.S.A. 102:10451–10453CrossRef Novoselov KS, Jiang D, Schedin F, Booth TJ, Khotkevich VV, Morozov SV, Geim AK (2005) Two-dimensional atomic crystals. Proc Nat Acad Sci U.S.A. 102:10451–10453CrossRef
Zurück zum Zitat Popa D, Sun Z, Torrisi F, Hasan T, Wang F, Ferrari AC (2010) Sub 200 fs pulse generation from a graphene mode-locked fiber laser. Appl Phys Lett 97(20):203106CrossRef Popa D, Sun Z, Torrisi F, Hasan T, Wang F, Ferrari AC (2010) Sub 200 fs pulse generation from a graphene mode-locked fiber laser. Appl Phys Lett 97(20):203106CrossRef
Zurück zum Zitat Popa D, Sun Z, Hasan T, Torrisi F, Wang F, Ferrari AC (2011) Graphene Q-switched, tunable fiber laser. Appl Phys Lett 98(7):073106CrossRef Popa D, Sun Z, Hasan T, Torrisi F, Wang F, Ferrari AC (2011) Graphene Q-switched, tunable fiber laser. Appl Phys Lett 98(7):073106CrossRef
Zurück zum Zitat Qi X, Pu KY, Zhou X, Li H, Liu B, Boey F, Huang W, Zhang H (2010) Conjugated-polyelectrolyte-functionalized reduced graphene oxide with excellent solubility and stability in polar solvents. Small 6(5):663–669CrossRef Qi X, Pu KY, Zhou X, Li H, Liu B, Boey F, Huang W, Zhang H (2010) Conjugated-polyelectrolyte-functionalized reduced graphene oxide with excellent solubility and stability in polar solvents. Small 6(5):663–669CrossRef
Zurück zum Zitat Reina A, Jia X, Ho J, Nezich D, Son H, Bulovic V, Dresselhaus MS, Kong J (2009) Large area, few-layer graphene films on arbitrary substrates by chemical vapor deposition. Nano Lett 9(1):30–35CrossRef Reina A, Jia X, Ho J, Nezich D, Son H, Bulovic V, Dresselhaus MS, Kong J (2009) Large area, few-layer graphene films on arbitrary substrates by chemical vapor deposition. Nano Lett 9(1):30–35CrossRef
Zurück zum Zitat Saad G (2010) Applying the h-index in exploring bibliometric properties of elite marketing scholars. Scientometrics 83(2):423–433CrossRef Saad G (2010) Applying the h-index in exploring bibliometric properties of elite marketing scholars. Scientometrics 83(2):423–433CrossRef
Zurück zum Zitat Stankovich S, Dikin DA, Dommett GHB, Kohlhaas KM, Zimney EJ, Stach EA, Piner RD, Nguyen ST, Ruoff RS (2006) Graphene-based composite materials. Nature 442(7100):282–286CrossRef Stankovich S, Dikin DA, Dommett GHB, Kohlhaas KM, Zimney EJ, Stach EA, Piner RD, Nguyen ST, Ruoff RS (2006) Graphene-based composite materials. Nature 442(7100):282–286CrossRef
Zurück zum Zitat Stankovich S, Dikin DA, Piner RD, Kohlhaas KA, Kleinhammes A, Jia Y, Wu Y, Nguyen ST, Ruoff RS (2007) Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide. Carbon 45(7):1558–1565CrossRef Stankovich S, Dikin DA, Piner RD, Kohlhaas KA, Kleinhammes A, Jia Y, Wu Y, Nguyen ST, Ruoff RS (2007) Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide. Carbon 45(7):1558–1565CrossRef
Zurück zum Zitat Su Q, Pang SP, Alijani V, Li C, Feng XL, Mullen K (2009) Composites of graphene with large aromatic molecules. Adv Mater 21(31):3191CrossRef Su Q, Pang SP, Alijani V, Li C, Feng XL, Mullen K (2009) Composites of graphene with large aromatic molecules. Adv Mater 21(31):3191CrossRef
Zurück zum Zitat Sun ZP, Popa D, Hasan T, Torrisi F, Wang FQ, Kelleher EJR, Travers JC, Ferrari AC (2010) A stable, wideband tunable, near transform-limited, graphene-mode-locked, ultrafast laser. Nano Res 3(9):653–660CrossRef Sun ZP, Popa D, Hasan T, Torrisi F, Wang FQ, Kelleher EJR, Travers JC, Ferrari AC (2010) A stable, wideband tunable, near transform-limited, graphene-mode-locked, ultrafast laser. Nano Res 3(9):653–660CrossRef
Zurück zum Zitat Tan WD, Su CY, Knize RJ, Xie GQ, Li LJ, Tang DY (2010) Mode locking of ceramic Nd: yttrium aluminum garnet with graphene as a saturable absorber. Appl Phys Lett 96(3):031106CrossRef Tan WD, Su CY, Knize RJ, Xie GQ, Li LJ, Tang DY (2010) Mode locking of ceramic Nd: yttrium aluminum garnet with graphene as a saturable absorber. Appl Phys Lett 96(3):031106CrossRef
Zurück zum Zitat Tans SJ, Devoret MH, Dai H, Thess A, Smalley RE, Geerligs LJ, Dekker C (1997) Individual single-wall carbon nanotubes as quantum wires. Nature 386:474–477CrossRef Tans SJ, Devoret MH, Dai H, Thess A, Smalley RE, Geerligs LJ, Dekker C (1997) Individual single-wall carbon nanotubes as quantum wires. Nature 386:474–477CrossRef
Zurück zum Zitat Verspagen B (2007) Mapping technological trajectories as patent citation networks: a study on the history of fuel cell research. Adv Complex Syst 10(1):93–115CrossRef Verspagen B (2007) Mapping technological trajectories as patent citation networks: a study on the history of fuel cell research. Adv Complex Syst 10(1):93–115CrossRef
Zurück zum Zitat Wang X, Zhi L, Muellen K (2008) Transparent, conductive graphene electrodes for dye-sensitized solar cells. Nano Lett 8(1):323–327CrossRef Wang X, Zhi L, Muellen K (2008) Transparent, conductive graphene electrodes for dye-sensitized solar cells. Nano Lett 8(1):323–327CrossRef
Zurück zum Zitat Wang Y, Tong SW, Xu XF, Ozyilmaz B, Loh KP (2011) Interface Engineering of Layer-by-Layer Stacked Graphene Anodes for High-Performance Organic Solar Cells. Adv Mater 23(13):1514–1518CrossRef Wang Y, Tong SW, Xu XF, Ozyilmaz B, Loh KP (2011) Interface Engineering of Layer-by-Layer Stacked Graphene Anodes for High-Performance Organic Solar Cells. Adv Mater 23(13):1514–1518CrossRef
Zurück zum Zitat Wassei JK, Kaner RB (2010) Graphene, a promising transparent conductor. Mater Today 13(3):52–59CrossRef Wassei JK, Kaner RB (2010) Graphene, a promising transparent conductor. Mater Today 13(3):52–59CrossRef
Zurück zum Zitat Watcharotone S, Dikin DA, Stankovich S, Piner R, Jung I, Dommett GHB, Evmenenko G, Wu SE, Chen SF, Liu CP, Nguyen SBT, Ruoff RS (2007) Graphene-silica composite thin films as transparent conductors. Nano Lett 7(7):1888–1892CrossRef Watcharotone S, Dikin DA, Stankovich S, Piner R, Jung I, Dommett GHB, Evmenenko G, Wu SE, Chen SF, Liu CP, Nguyen SBT, Ruoff RS (2007) Graphene-silica composite thin films as transparent conductors. Nano Lett 7(7):1888–1892CrossRef
Zurück zum Zitat Wojcik A, Kamat PV (2010) Reduced graphene oxide and porphyrin. An interactive affair in 2-D. ACS Nano 4(11):6697–6706CrossRef Wojcik A, Kamat PV (2010) Reduced graphene oxide and porphyrin. An interactive affair in 2-D. ACS Nano 4(11):6697–6706CrossRef
Zurück zum Zitat Xu JL, Li XL, Wu YZ, Hao XP, He JL, Yang KJ (2011) Graphene saturable absorber mirror for ultra-fast-pulse solid-state laser. Opt Lett 36(10):1948–1950CrossRef Xu JL, Li XL, Wu YZ, Hao XP, He JL, Yang KJ (2011) Graphene saturable absorber mirror for ultra-fast-pulse solid-state laser. Opt Lett 36(10):1948–1950CrossRef
Zurück zum Zitat Yin Z, Wu S, Zhou X, Huang X, Zhang Q, Boey F, Zhang H (2010) Electrochemical deposition of ZnO nanorods on transparent reduced graphene oxide electrodes for hybrid solar cells. Small 6(2):307–312CrossRef Yin Z, Wu S, Zhou X, Huang X, Zhang Q, Boey F, Zhang H (2010) Electrochemical deposition of ZnO nanorods on transparent reduced graphene oxide electrodes for hybrid solar cells. Small 6(2):307–312CrossRef
Zurück zum Zitat Zhang H, Tang DY, Zhao LM, Bao QL, Loh KP (2009) Large energy mode locking of an erbium-doped fiber laser with atomic layer graphene. Opt Express 17(20):17630–17635CrossRef Zhang H, Tang DY, Zhao LM, Bao QL, Loh KP (2009) Large energy mode locking of an erbium-doped fiber laser with atomic layer graphene. Opt Express 17(20):17630–17635CrossRef
Zurück zum Zitat Zhang H, Tang DY, Knize RJ, Zhao LM, Bao QL, Loh KP (2010) Graphene mode locked, wavelength-tunable, dissipative soliton fiber laser. Appl Phys Lett 96(11):111112CrossRef Zhang H, Tang DY, Knize RJ, Zhao LM, Bao QL, Loh KP (2010) Graphene mode locked, wavelength-tunable, dissipative soliton fiber laser. Appl Phys Lett 96(11):111112CrossRef
Metadaten
Titel
Recent trend in graphene for optoelectronics
verfasst von
Yu-Bin Chen
John S. Liu
Pang Lin
Publikationsdatum
01.02.2013
Verlag
Springer Netherlands
Erschienen in
Journal of Nanoparticle Research / Ausgabe 2/2013
Print ISSN: 1388-0764
Elektronische ISSN: 1572-896X
DOI
https://doi.org/10.1007/s11051-013-1454-3

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