石墨烯以其优异力学、物理性能以及独特二维结构成为铝基复合材料的理想纳米增强相.金属基纳米复合材料制备技术快速发展,促进了石墨烯增强铝基纳米复合材料在结构和功能材料领域中的广泛研究.石墨烯在铝基体中的分散以及石墨烯/铝的界面控制问题具有重要科学研究和工程应用价值.重点介绍石墨烯增强铝基纳米复合材料最新研究进展,主要包括石墨烯增强铝基纳米复合材料的分散和冶金成型技术及其结构表征和力学性能研究.实验表明石墨烯能够显著提高铝基体力学性能,但作者认为通过优化工艺参数、改善微观结构和控制结合界面能够进一步优化材料性能.此外,为实现工程应用,还需加强石墨烯增强铝基复合材料的腐蚀性能和热、电性等物理性能研究,并突破材料的低成本、大规模制备技术.本文还基于石墨烯独特二维结构和表面状态,对石墨烯的增强增韧机制进行了深入讨论.
参考文献
[1] | Geim AK;Novoselov KS.The rise of graphene[J].Nature materials,20073(3):183-191. |
[2] | Morozov SV;Novoselov KS;Katsnelson MI;Schedin F;Elias DC;Jaszczak JA;Geim AK.Giant intrinsic carrier mobilities in graphene and its bilayer[J].Physical review letters,20081(1):016602-1-016602-4-0. |
[3] | Andrey K. Geim;Allan H. MacDonald.Graphene: Exploring Carbon Flatland[J].Physics Today,20078(8):35-41. |
[4] | Keith R. Paton et at..Scalable production of large quantities of defect-free few-layer graphene by shear exfoliation in liquids[J].Nature materials,20146(6):624-630. |
[5] | Shin, S. E.;Choi, H. J.;Shin, J. H.;Bae, D. H..Strengthening behavior of few-layered graphene/aluminum composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,2015:143-151. |
[6] | Chen, I-Wen Peter;Chen, Yu-Syuan;Kao, Na-Jung;Wu, Chien-Wei;Zhang, Yu-Wei;Li, Hong-Tu.Scalable and high-yield production of exfoliated graphene sheets in water and its application to an all-solid-state supercapacitor[J].Carbon: An International Journal Sponsored by the American Carbon Society,2015:16-24. |
[7] | Hernandez Y;Nicolosi V;Lotya M;Blighe FM;Sun ZY;De S;McGovern IT;Holland B;Byrne M;Gun'ko YK.High-yield production of graphene by liquid-phase exfoliation of graphite[J].Nature nanotechnology,20089(9):563-568. |
[8] | Lee DS;Riedl C;Krauss B;von Klitzing K;Starke U;Smet JH.Raman Spectra of Epitaxial Graphene on SiC and of Epitaxial Graphene Transferred to SiO2[J].Nano letters,200812(12):4320-4325. |
[9] | Bae, S.;Kim, H.;Lee, Y.;Xu, X.;Park, J.-S.;Zheng, Y.;Balakrishnan, J.;Lei, T.;Ri Kim, H.;Song, Y.I.;Kim, Y.-J.;Kim, K.S.;?zyilmaz, B.;Ahn, J.-H.;Hong, B.H.;Iijima, S..Roll-to-roll production of 30-inch graphene films for transparent electrodes[J].Nature nanotechnology,20108(8):574-578. |
[10] | Javad Rafiee;Xi Mi;Hemtej Gullapalli.Wetting transparency of graphene[J].Nature materials,20123(3):217-222. |
[11] | Weatherup, R.S.;Bayer, B.C.;Blume, R.;Ducati, C.;Baehtz, C.;Schl?gl, R.;Hofmann, S..In situ characterization of alloy catalysts for Low-temperature graphene growth[J].Nano letters,201110(10):4154-4160. |
[12] | Siegfried Eigler;Michael Enzelberger-Heim;Stefan Grimm;Philipp Hofmann,;Wolfgang Kroener;Andreas Geworski;Christoph Dotzer;Michael Roeckert;Jie Xiao;Christian Papp;Ole Lytken;Hans-Peter Steinrueck;Paul Mueller;Andreas Hirsch.Wet Chemical Synthesis of Graphene[J].Advanced Materials,201326(26):3583-3587. |
[13] | Dmitry V. Kosynkin;Amanda L. Higginbotham;Alexander Sinitskii;Jay R. Lomeda;Ayrat Dimiev;B. Katherine Price;James M. Tour.Longitudinal Unzipping Of Carbon Nanotubes To Form Graphene Nanoribbons[J].Nature,20097240(7240):872-876. |
[14] | Liying Jiao;Li Zhang;Xinran Wang;Georgi Diankov;Hongjie Dai.Narrow Graphene Nanoribbons From Carbon Nanotubes[J].Nature,20097240(7240):877-880. |
[15] | Libin Tang;Xueming Li;Rongbin Ji.Bottom-up synthesis of large-scale graphene oxide nanosheetst[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201212(12):5676-5683. |
[16] | Amartya Chakrabarti;Jun Lu;Jennifer C. Skrabutenas.Conversion of carbon dioxide to few-layer graphene[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201126(26):9491-9493. |
[17] | Bartolucci, Stephen F.;Paras, Joseph;Rafiee, Mohammad A.;Rafiee, Javad;Lee, Sabrina;Kapoor, Deepak;Koratkar, Nikhil.Graphene-aluminum nanocomposites[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,201127(27):7933-7937. |
[18] | Changgu Lee;Xiaoding Wei;Jeffrey W. Kysar;James Hone.Measurement of the Elastic Properties and Intrinsic Strength of Monolayer Graphene[J].Science,20085887(5887):385-388. |
[19] | Changgu Lee;Xiaoding Wei;Qunyang Li;Robert Carpick;Jeffrey W. Kysar;James Hone.Elastic and frictional properties of graphene[J].Physica status solidi, B. Basic research,200911/12(11/12):2562-2567. |
[20] | Andy Nieto;Debrupa Lahiri;Arvind Agarwal.Synthesis and properties of bulk graphene nanoplatelets consolidated by spark plasma sintering[J].Carbon: An International Journal Sponsored by the American Carbon Society,201211(11):4068-4077. |
[21] | Stankovich S;Dikin DA;Dommett GHB;Kohlhaas KM;Zimney EJ;Stach EA;Piner RD;Nguyen ST;Ruoff RS.Graphene-based composite materials[J].Nature,20067100(7100):282-286. |
[22] | Jingyue Wang;Zhiqiang Li;Genlian Fan.Reinforcement with graphene nanosheets in aluminum matrix composites[J].Scripta materialia,20128(8):594-597. |
[23] | Liu, X.D.;Han, Y.D.;Jing, H.Y.;Wei, J.;Xu, L.Y..Effect of graphene nanosheets reinforcement on the performance of SnAgCu lead-free solder[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2013:25-32. |
[24] | Yanwu Zhu;Shanthi Murali;Meryl D. Stoller;K. J. Ganesh;Weiwei Cai;Paulo J. Ferreira;Adam Pirkle;Robert M. Wallace;Katie A. Cychosz;Matthias Thommes;Dong Su;Eric A. Stach;Rodney S. Ruoff.Carbon-Based Supercapacitors Produced by Activation of Graphene[J].Science,2011Jun.24 TN.6037(Jun.24 TN.6037):1537-1541. |
[25] | A.Peigney;Ch.Laurent;E.Flahaut;R.R.Bacsa;A.Rousset.Specific surface area of carbon nanotubes and bundles of carbon nanotubes[J].Carbon: An International Journal Sponsored by the American Carbon Society,20014(4):507-514. |
[26] | C.F Deng;X.X Zhang;D.Z Wang.Calorimetric study of carbon nanotubes and aluminum[J].Materials Letters,200714/15(14/15):3221-3223. |
[27] | Tjong, S.C..Recent progress in the development and properties of novel metal matrix nanocomposites reinforced with carbon nanotubes and graphene nanosheets[J].Materials Science & Engineering, R. Reports: A Review Journal,201310(10):281-350. |
[28] | 王振卿;刘相法;边秀房;张均燕.Al-C反应的DSC和XRD分析[J].铸造,2003(7):480-483. |
[29] | M. Rodriguez-Reyes;M.I. Pech-Canul;J.C. Rendon-Angeles;J. Lopez-Cuevas.Limiting the development of Al_4C_3 to prevent degradation of Al/SiC_p composites processed by pressureless infiltration[J].Composites science and technology,20067/8(7/8):1056-1062. |
[30] | K. Dash;B.C. Ray;D. Chaira.Synthesis and characterization of copper-alumina metal matrix composite by conventional and spark plasma sintering[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2012:78-84. |
[31] | 燕绍九;杨程;洪起虎;陈军洲;刘大博;戴圣龙.石墨烯增强铝基纳米复合材料的研究[J].材料工程,2014(4):1-6. |
[32] | Li, J. L.;Xiong, Y. C.;Wang, X. D.;Yan, S. J.;Yang, C.;He, W. W.;Chen, J. Z.;Wang, S. Q.;Zhang, X. Y.;Dai, S. L..Microstructure and tensile properties of bulk nanostructured aluminum/graphene composites prepared via cryomilling[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2015:400-405. |
[33] | Chi-Hoon Jeon;Yong-Ha Jeong;Jeong-Jin Seo;Huynh Ngoc Tien;Sung-Tae Hong;Young-Jin Yum;Seung-Hyun Hur;Kwang-Jin Lee.Material Properties of Graphene/Aluminum Metal Matrix Composites Fabricated by Friction Stir Processing[J].International Journal of Precision Engineering and Manufacturing,20146(6):1235-1239. |
[34] | Lian-Yi Chen;Hiromi Konishi;Axel Fehrenbacher.Novel nanoprocessing route for bulk graphene nanoplatelets reinforced metal matrix nanocomposites[J].Scripta materialia,20121(1):29-32. |
[35] | Qiang Liu;Liming Ke;Fencheng Liu;Chunping Huang;Li Xing.Microstructure and mechanical property of multi-walled carbon nanotubes reinforced aluminum matrix composites fabricated by friction stir processing[J].Materials & design,2013Mar.(Mar.):343-348. |
[36] | Muhammad Rashad;Fusheng Pan;Aitao Tang;Muhammad Asif.Effect of Graphene Nanoplatelets addition on mechanical properties of pure aluminum using a semi-powder method[J].自然科学进展(英文版),2014(2):101-108. |
[37] | Shin, S. E.;Bae, D. H..Deformation behavior of aluminum alloy matrix composites reinforced with few-layer graphene[J].Composites, Part A. Applied science and manufacturing,2015:42-47. |
[38] | Ilyin, AM;Daineko, EA;Beall, GW.Computer simulation and study of radiation defects in graphene[J].Physica, E. Low-dimensional systems & nanostructures,20091(1):67-69. |
[39] | Haoyue Sun;Xiaoning Yang.Molecular simulation of self-assembly structure and interfacial interaction for SDBS adsorption on graphene[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,2014:82-89. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%