| 1,862 | 14 | 12 |
| 下载次数 | 被引频次 | 阅读次数 |
富勒烯C60材料具有较好的稳定性、催化性能、超导性、生物相容性、抗氧化性,在不同领域中有较为广泛的应用前景.本文综述了富勒烯C60材料的物理、化学性能,以及它在光学、电学、催化和生物医药等方面的应用研究,并展望了富勒烯C60材料的发展趋势和前景.
Abstract:[60] Fullerenes materials have preferable stability, catalysis, superconductivity, biocompatibility, and antioxidation, and have a very broad application prospects in many fields.A comprehensive review of the [60] fullerene materials' physical and chemical properties and their application research in optics, electronics, catalysis and biomedicine is presented and their application and development trends are proposed.
[1]KRATSCHMER W,LAMB L D,FOSTIROPOULOS K D,et al.Solid 60C:a new form of carbon[J].Nature,1990,347(27):354-358.
[2]ALLEMAND P M,KHEMANI K C,KOCH A,et al.Organic molecular soft ferromagnetism in a fullerene60C[J].Science,1991,253(5017):301-302.
[3]姜宗福.富勒烯的磁化率计算[J].物理化学学报,1996,12(9):852-855.
[4]PASQUARELLE A,SCHLUTER M,HADDON R C.Ring currents in icosahedral 60C[J].Science,1992,257(5077):1660-1661.
[5]倪明,张波,何义亮.水介质中60C纳米晶体颗粒的扩散状态对其光化学反应活性的影响研究[J].环境化学,2011,30(5):964-969.
[6]光善仪,徐洪耀,李村,等.60C和苯乙炔共聚物荧光性能研究[J].功能材料,2000,31(6):642-648.
[7]霍延平,曾和平,江焕峰,等.60C-吡咯烷衍生物的合成及非线性光学性质的研究[J].有机化学,2006,12(26):1657-1662.
[8]NAKAGMA H,KIBI S,TAGAWA M,et al.Microtribological properties of ultrathin 60C films grown by molecular beam epitaxy[J].Wear,2000,238(1):45-47.
[9]TAYLOR R,AVENT A G,BIRKETT P R,et al.Chem Inform abstract:isolation,characterization,and chemical reactions of fullerenes[J].Chem Inform,1993,24(15):135-142.
[10]李积彬,李瀚,孙伟安.60C的摩擦学特性研究[J].摩擦学学报,2000,20(4):307-309.
[11]孟祥悦,蒋礼,舒春英,等.聚合物太阳能电池中富勒烯受体材料研究进展[J].科学通报,2012,57(36):3437-3449.
[12]刘震,徐丰,严大东.聚合物-富勒烯太阳能电池器件物理研究进展[J].化学学报,2014,72(2):171-184.
[13]GOL’DSHLEGER N F,SHUL’GA Y M,ROSHCHUPKINA O S,et al.Reaction of platinum fulleride 60C Pt with dihydroanthracene[J].Russian Journal of General Chemistry,2001,71(1):114-118.
[14]LI Baojun,XU Zheng.A nonmetal catalyst for molecular hydrogen activation with comparable catalytic hydrogenation capability to noble metal catalyst[J].J Am Chem Soc,2009,131(45):16380-16382.
[15]周素芹,程晓春,居学海,等.储氢材料研究进展[J].材料科学与工程学,2010,28(5):783-790.
[16]TANIGAKI K,KOSAKA D,MANAKO T,et al.Alkali effects on the electronic states of 3 60K C and3 60Rb C[J].Chemical Physics Letters,1995,240(5):627-632.
[17]SAYES C M,MARCHIONE A A,REED K L,et al.Comparative pulmonary toxicity assessments of 60C water suspensions in rats:few differences in fullerene toxicity in vivo in contrast to in vitro profiles[J].Nano Lett,2007,7(8):2399-2406.
[18]张静,章亚东.富勒烯生物分子衍生物的合成与生物学效应研究[J].材料导报,2010,24(12):135-141.
[19]黄文栋,钱凯先.富勒烯60C的生物学研究[J].生理科学进展,1995,26(1):367-369.
[20]HUANG Shengtung,LIAO Jiansheng,FANG Hsuwei,et al.Synthesis and ant-inflammation evaluation of new60C fulleropyrrolidines bearing biologically active xanthine[J].Bioorganic Medicinal Chemistry Letters,2008,18(1):99-103.
[21]MCEWEN C N,MCKAY R G,LARSEN B S,et al.60C as a radical aponge[J].J Am Chem Soc,1992,114(11):4412-4414.
[22]ALI S S,HARDT J I,QUICK K L,et al.A biologically effective fullerene 60(C)derivative with superoxide dismutase mimetic properties[J].Free Radical Biology Medicine,2004,37(8):1191-1202.
[23]TAKADA H,KOKUBO K,MATSUBAVASHI K,et al.Antioxidant activity of supramolecular water-solube fullerenes evaluated byβ-carotene bleaching assay[J].Bioscience Biotechnology Biochemistry,2006,70(12):3088-3093.
基本信息:
中图分类号:O613.71
引用信息:
[1]黄飞,徐慧敏,黄成相,等.富勒烯C_(60)的性能及应用研究进展[J].五邑大学学报(自然科学版),2017,31(01):24-28.
基金信息:
国家自然科学基金资助项目(21271006); 安徽省高校自然科学研究项目(KJHS2016B06); 安徽省大学生创新创业训练计划项目(201510375017)
2017-02-15
2017-02-15