欢迎登录材料期刊网

材料期刊网

高级检索

介绍了卟啉类化合物/石墨烯纳米复合材料的制备方法及其光诱导电子传递性质.论述了影响复合材料光电转换效率和卟啉类基团电荷有效保留时间的结构、相互作用方式、空间定位等因素.分析了卟啉类化合物/石墨烯纳米复合材料在目前研究和应用中存在的主要问题,并对其应用前景进行了展望.

参考文献

[1] Virendra Singh;Daeha Joung;Lei Zhai;Soumen Das;Saiful I. Khondaker;Sudipta Seal .Graphene based materials: Past, present and future[J].Progress in materials science,2011(8):1178-1271.
[2] Wojcik, A.;Kamat, P.V. .Reduced graphene oxide and porphyrin. An interactive affair in 2-D[J].ACS nano,2010(11):6697-6706.
[3] Anindarupa Chunder;Tanusri Pal;Saiful I. Khondaker .Reduced Graphene Oxide/Copper Phthalocyanine Composite and Its Optoelectrical Properties[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(35):15129-15135.
[4] Jianxin Geng;Hee-Tae Jung .Porphyrin Functionalized Graphene Sheets in Aqueous Suspensions: From the Preparation of Graphene Sheets to Highly Conductive Graphene Films[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(18):8227-8234.
[5] Zhang Siyuan;Tang Sheng;Lei Jianping et al.Functionalization of graphene nanoribbons with porphyrin for electrocatalysis and amperometric biosensing[J].Journal of Electroanalytical Chemistry,2011,656(1-2):285.
[6] Xicm-Fu Zhang;Qian Xi .A graphene sheet as an efficient electron acceptor and conductor for photoinduced charge separation[J].Carbon: An International Journal Sponsored by the American Carbon Society,2011(12):3842-3850.
[7] J. Malig;C. Romero-Nieto;N.Jux;D. M. Guldi .Integrating Water-Soluble Graphene into Porphyrin Nanohybrids[J].Advanced Materials,2012(6):800-805.
[8] 毕纯,李永捷,陈浩文,尹桂,朱俊杰.Designs, Synthesis, Characterization and Direct Electrochem- istry of Zinc-Porphyrin Bearing Pyrene Noncovalent Functionalized Graphene Oxide Sheet[J].中国化学:英文版,2012(08):1722-1728.
[9] Chandra Bikram K C;Sushanta K Das;Kei Ohkubo et al.Ultrafast charge separation in supramolecular tetrapyrrolegraphene hybrids[J].Chemical Communications,2012,48:11859.
[10] Yea Tingxiu;Yea Shulan;Chen Dongmei et al.Spectroscopic characterization of tetracationic porphyrins and their noncovalent functionalization with graphene[J].Spectrochimica Acta Part A:Molecular and Biomolecular Spectroscopy,2011,86(01):467.
[11] Liu Zhongde;Zhao Hengxin;Huang Chengzhi et al.Obstruction of photoinduced electron transfer from excited porphyrin to graphene oxide:A fluorescence turn-on sensing platform for Iron (Ⅲ) ions[J].Plos One,2012,7(12):1.
[12] Jahan, M.;Bao, Q.;Loh, K.P. .Electrocatalytically active graphene-porphyrin MOF composite for oxygen reduction reaction[J].Journal of the American Chemical Society,2012(15):6707-6713.
[13] Shunlong Yang;Baofeng Xu;Jiaqi Zhang .Controllable Adsorption of Reduced Graphene Oxide onto Self-Assembled Alkanethiol Monolayers on Gold Electrodes: Tunable Electrode Dimension and Potential Electrochemical Applications[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(10):4389-4393.
[14] Hong Ying Mao;Rui Wang;Yu Wang;Tian Chao Niu;Jian Qiang Zhong;Ming Yang Huang;Dong Chen Qi;Kian Ping Loh;Andrew Thye Shen Wee;Wei Chen .Chemical vapor deposition graphene as structural template to control interfacial molecular orientation of chloroaluminium phthalocyanine[J].Applied physics letters,2011(9):093301-1-093301-3.
[15] Qi-Hui Wu;Guo Hong;T. W. Ng;S. T. Lee .Substrate effect on the electronic structures of CuPc/graphene interfaces[J].Applied physics letters,2012(16):161603-1-161603-4.
[16] Yanfei Xu;Zhibo Liu;Xiaoliang Zhang;Yan Wang;Jianguo Tian;Yi Huang;Yanfeng Ma;Xiaoyan Zhang;Yongsheng Chen .A Graphene Hybrid Material Covalently Functionalized With Porphyrin: Synthesis And Optical Limiting Property[J].Advanced Materials,2009(12):1275-1279.
[17] Nikolaos Karousis;Atula S. D. Sandanayaka;Taku Hasobe .Graphene oxide with covalently linked porphyrin antennae: Synthesis, characterization and photophysical properties[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2011(1):109-117.
[18] M. Bala Murali Krishna;N. Venkatramaiah;R. Venkatesan .Synthesis and structural, spectroscopic and nonlinear optical measurements of graphene oxide and its composites with metal and metal free porphyrins[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2012(7):3059-3068.
[19] Seul Ki Kim;Seungwon Jeon .Improved electrocatalytic effect of carbon nanomaterials by covalently anchoring with CoTAPP via diazonium salt reactions[J].Electrochemistry Communications,2012,22:141.
[20] Umeyama, T.;Mihara, J.;Tezuka, N.;Matano, Y.;Stranius, K.;Chukharev, V.;Tkachenko, N.V.;Lemmetyinen, H.;Noda, K.;Matsushige, K.;Shishido, T.;Liu, Z.;Hirose-Takai, K.;Suenaga, K.;Imahori, H. .Preparation and photophysical and photoelectrochemical properties of a covalently fixed porphyrin-chemically converted graphene composite[J].Chemistry: A European journal,2012(14):4250-4257.
[21] Hayashi, H.;Lightcap, I.V.;Tsujimoto, M.;Takano, M.;Umeyama, T.;Kamat, P.V.;Imahori, H. .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].Journal of the American Chemical Society,2011(20):7684-7687.
[22] Li Haiyan;Zhang Yingwei;Chang Guohui et al.Environmentally friendly photoeatalytic synthesis of porphyrin/Ag nanoparticles/reduced graphene oxide ternary nanohybrids having superior catalytic activity[J].ChemPlusChem,2012,77(07):545.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%