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使用密度泛函理论计算了掺杂或修饰Al或Mn原子的石墨烯对半胱氨酸的吸附性能.计算结果表明,掺杂或修饰Al或Mn原子后,Graphene与半胱氨酸之间结合稳定,具有较大的结合能.其中掺杂或修饰Mn原子的体系的吸附能整体高于掺杂或修饰Al原子的体系.石墨烯上修饰或掺杂Al或Mn原子,增加了石墨烯基底与半胱氨酸之间的电荷转移,特别是修饰方式显著改变了费米能级附近的性质,同时改变了Graphene的电导性质.Al或Mn原子修饰或者掺杂的Graphene除了增加对半胱氨酸吸附能力外,也是一种潜在的检测半胱氨酸的传感器材料,进而在生物领域得到更广泛的应用,比如用来检测富含半胱氨酸的金属硫蛋白.

参考文献

[1] Rivas GA;Rubianes MD;Rodriguez MC;Ferreyra NE;Luque GL;Pedano ML;Miscoria SA;Parrado C .Carbon nanotubes for electrochemical biosensing[J].Talanta: The International Journal of Pure and Applied Analytical Chemistry,2007(3):291-307.
[2] Schedin F;Geim A K;Morozov S V et al.Detection of individual gas molecules adsorbed on graphene[J].Nature Materials,2007,6:652.
[3] Subbiah Alwarappan;Arzum Erdem;Chang Liu .Probing the Electrochemical Properties of Graphene Nanosheets for Biosensing Applications[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(20):8853-8857.
[4] Liu Z;Robinson JT;Sun XM;Dai HJ .PEGylated nanographene oxide for delivery of water-insoluble cancer drugs[J].Journal of the American Chemical Society,2008(33):10876-10877.
[5] Chi QJ.;Nielsen JU.;Friis EP.;Chorkendorff I.;Canters GW. Andersen JET.;Ulstrup J.;Zhang JD. .Molecular monolayers and interfacial electron transfer of Pseudomonas aeruginosa azurin on Au(111)[J].Journal of the American Chemical Society,2000(17):4047-4055.
[6] Zhang J;Chi Q;Kutznetsov A M et al.Electronic properties of functional biomolecules at metal/aqueous solution interfaces[J].Journal of Physical Chemistry B,2002,106(06):1131.
[7] Stephen M. C. Ritchie;Kyle E. Kissick;Leonidas G. Bachas;Subhas K. Sikdar;Chetan Parikh;Dibakar Bhattacharyya .Polycysteine and other polyamino acid functionalized microfiltration membranes for heavy metal capture[J].Environmental Science & Technology: ES&T,2001(15):3252-3258.
[8] Leenaerts O;Partoens B;Peeters FM .Adsorption of H2O, NH3, CO, NO2, and NO on graphene: A first-principles study[J].Physical review, B. Condensed matter and materials physics,2008(12):125416-1-125416-6-0.
[9] Capone S;Forleo A;Francioso L et al.Solid state gas sensors:State of the art and future activities[J].J Opt Adv Mater Adv Mater,2003,5(05):1335.
[10] Kong J;Franklin N R;Zhou C W et al.Nanotube molecular wires as chemical sensors[J].Science,2000,287(5453):622.
[11] Collins P G;Bradley K;Ishigami M et al.Extreme oxygen sensitivity of electronic properties of carbon nanotubes[J].Science,2000,287(5459):1801.
[12] Chi, M;Zhao, YP .Adsorption of formaldehyde molecule on the intrinsic and Al-doped graphene: A first principle study[J].Computational Materials Science,2009(4):1085-1090.
[13] Avramov PV.;Kudin KN.;Scuseria GE. .Single wall carbon nanotubes density of states: comparison of experiment and theory[J].Chemical Physics Letters,2003(5-6):597-601.
[14] Jeloaica L;Sidis V .DFT investigation of the adsorption of atomic hydrogen on a cluster-model graphite surface[J].Chemical Physics Letters,1999,300(1-2):157.
[15] Bain C D;Evall J;Whitesides G M .Polycysteine and other polyamino acid functionalized microfiltration membranes for heavy metal capture[J].Journal of the American Chemical Society,1989,111(18):7155.
[16] Kuhnle A;Linderoth TR;Hammer B;Besenbacher F .Chiral recognition in dimerization of adsorbed cysteine observed by scanning tunnelling microscopy[J].Nature,2002(6874):891-893.
[17] Zhang, Z.;Jia, H.;Ma, F.;Han, P.;Liu, X.;Xu, B. .First principle study of cysteine molecule on intrinsic and Au-doped graphene surface as a chemosensor device[J].Journal of molecular modeling,2011(4):649-655.
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