- 富勒烯及其衍生物的结构、性质和应用
- 甘利华 王春儒
- 945字
- 2020-08-27 17:53:52
参考文献
[1] Kroto H W,Heath JR,O’Brien SC,et al.C60:Buckminsterfullerene. Nature,1985,318:162-163.
[2] [日]矢沢科学事务所.诺贝尔奖中的科学:化学奖卷.郑涛,宋天译,译.北京:科学出版社,2011.
[3] Kratschmer W,Lamb L D,Fostiropoulos K,et al. Solid C60:a new form of carbon. Nature,1990,347:354-358.
[4] Heath J R,O’Brien S C,Zhang Q,et al. Lanthanum complexes of spheroidal carbon shells. J Am Chem Soc,1985,107:7779-7780.
[5] Chai Y,Guo T,Jin C M,et al. Fullerenes with metals inside. J Phys Chem,1991,95:7564-7568.
[6] Hopwood F G,Fisher K J,Greenhill P,et al. Carbon black:a precursor for fullerene and metallofullerene production. J Phys Chem B,1997,101:10704-10708.
[7] Kimura T,Sugai T,Shinohara H. Production and mass spectroscopic characterization of metallocarbon clusters incorporating Sc,Y,and Ca atoms.Int J Mass Spectrometry,1999,188:225-232.
[8] Lian Y F,Shi Z J,Zhou X H,et al. High-yield preparation of endohedral metallofullerenes by an improved DC arc-discharge method. Carbon,2000,38:2117-2121.
[9] Bubnov V P,Laukhina E E,Kareev I E,et al. Endohedral metallofullerenes:a convenient gram-scale preparation.Chem Mater,2002,14:1004-1008.
[10] Olah G A,Bucsi I,Aniszfeld R,et al. Chemical reactivity and functionalization of C60 and C70 fullerenes. Carbon,1992,30:1203-1211.
[11] Bucsi I,Aniszfeld R,Shamma T,et al. Convenient separation of high-purity C60 from crude fullerene extract by selective complexation with AlCl3. Proc Natl Acad Sci,1994,91:9019-9021.
[12] Stevenson S,Mackey M A,Pickens J E,et al. Selective complexation and reactivity of metallic nitride and oxometallic fullerenes with lewis acids and use as an effective purication method. Inorg Chem,2009,48:11685-11690.
[13] Akiyama K,Hamano T,Nakanishi Y,et al. Non-HPLC rapid separation of metallofullerenes and empty cages with TiCl4 lewis acid. J Am Chem Soc,2012,134:9762-9767.
[14] Wang Z Y,Nakanishi Y,Noda S,et al. The origin and mechanism of non-HPLC purication of metallofullerenes with TiCl4. J Phys Chem C,2012,116:25563-25567.
[15] Wang Z Y,Nakanishi Y,Noda S,et al. Missing small-bandgap metallofullerenes:their isolation and electronic properties. Angew Chem Int Ed,2013,52:11770-11774.
[16] Stevenson S,Rottinger K A. CuCl2 for the isolation of a broad array of endohedral fullerenes containing metallic,metallic carbide,metallic nitride,and metallic oxide clusters,and separation of their structural isomers. Inorg Chem,2013,52:9606-9612.
[17] Stevenson S,Rottinger K A,Fahim M,et al. Tuning the selectivity of Gd3N cluster endohedral metallofullerene reactions with lewis acids. Inorg Chem,2014,53:12939-12946.
[18] Stevenson S,Thompson H R,Arvola K D,et al. Isolation of CeLu2N@Ih-C80 through a non-chromatographic,two-step chemical process and crystallographic characterization of the pyramidalized CeLu2N within the icosahedral cage. Chem Eur J,2015,21:10362-10368.
[19] Tsuchiya T,Sato K,Kurihara H,et al.Host-guest complexation of endohedral metallofullerene with azacrown ether and its application. J Am Chem Soc,2006,128:6699-6703.
[20] Wu B,Wang T S,Zhang Z X,et al, An effective retro-cycloaddition of M3N@C80(M=Sc,Lu,Ho)metallofulleropyrrolidines. Chem Commun,2013,49:10489-10491.
[21] Diener M D,Alford J M. Isolation and properties of small-bandgap fullerenes. Nature,1998,393:668-671.
[22] Tsuchiya T,Wakahara T,Shirakura S,et al. Reduction of endohedral metallofullerenes:a convenient method for isolation. Chem Mater,2004,16:4343-4346.
[23] Sun D Y,Liu Z Y,Guo X H,et al.High-yield extraction of endohedral rare-earth fullerenes. J Phys Chem B,1997,101:3927-3930.
[24] Kubozono Y,Maeda H,Takabayashi Y,et al.Extractions of Y@C60,Ba@C60,La@C60,Ce@C60,Pr@C60,Nd@C60 and Gd@C60 with aniline. J Am Chem Soc,1996,118:6998-6999.
[25] Raebiger J W,Bolskar R D. Improved production and separation processes for gadolinium metal-lofullerenes. J Phys Chem C,2008,112:6605-6612.
[26] Aoyagi S,Nishibori E,Sawa H,et al. A layered ionic crystal of polar Li@C60 superatoms. Nat Chem,2010,2:678-683.
[27] Elliott B,Yu L,Echegoyen L. A simple isomeric separation of D5h and Ih Sc3N@C80 by selective chemical oxidation. J Am Chem Soc,2005,127:10885-10888.
[28] Cerón M R,Li F F,Echegoyen L. An ecient method to separate Sc3N@C80 Ih and D5h isomers and Sc3N@C78 by selective oxidation with acetylferrocenium [Fe(COCH3C5H4)Cp]+. Chem Eur J,2013,19:7410-7415.