科研成果

2000
Sun M, Xu N, Cao YW, Yao JN, Wang EG. Preparation, microstructure and photochromism of a new nanocrystalline WO3 film. Journal of Materials Science Letters. 2000;(16):1407-1409.
Kang H-K, Mikszta JA, Deng H, Sercarz EE, Jensen PE, Kim BS. Processing and reactivity of T cell epitopes containing two cysteine residues from hen egg-white lysozyme (HEL74-90). Journal of Immunology [Internet]. 2000;(4):1775-1782. 访问链接
FR X, W S, Wyss, R. Quadrupole pairing interaction and signature inversion. Nuclear Physics A. 2000;669:119.
Ma Z, Shi J, Xie XC. Quantum ac transport through coupled quantum dots. Physical Review B - Condensed Matter and Materials Physics. 2000;(23):15352-15355.
Ma Z, Shi J, Xie XC. Quantum ac transport through coupled quantum dots. Physical Review B - Condensed Matter and Materials Physics. 2000;(23):15352-15355.
Wu J, Liu B-G, Zhang Z, Wang EG. Reaction limited aggregation in surfactant-mediated epitaxy. Physical Review B - Condensed Matter and Materials Physics. 2000;(19):13212-13222.
Wei L-N, Hu X, Chandra D, Seto E, Farooqui M. Receptor-interacting protein 140 directly recruits histone deacetylases for gene silencing. Journal of Biological Chemistry [Internet]. 2000;(52):40782-40787. 访问链接
Miao H, Yang Z. Regiospecific carbonylative annulation of iodophenol acetates and acetylenes to construct the flavones by a new catalyst of palladium-thiourea-dppp complex. Organic Letters [Internet]. 2000;(12):1765-1768. 访问链接
Bai XD, Yu J, Liu S, Wang EG. Role of nickel particles in selected growth of boron carbonitride tubular structures. Chemical Physics Letters. 2000;(5-6):485-489.
CS P, PM W, GD D, S B, AP B, T K, FG K, CJ P, JA S. Rotational and multi-quasiparticle excitations in Re-183. Nuclear Physics A. 2000;672:54.
Ebert P, Chao K-J, Niu Q, Shih CK, Plummer EW, Urban K. Scanning tunneling microscopy of defects in quasiperiodically ordered surfaces. Materials Science and Engineering A. 2000:826-829.
Pustilnik M, Flensberg K, Niu Q. Screening, Nonadiabaticity, and Quantized Acoustoelectric Current. Journal of Low Temperature Physics. 2000;(5-6):571-577.
Yu J, Ahn J, Yoon SF, Zhang Q, Rusli, Gan B, Chew K, Yu MB, Bai XD, Wang EG. Semiconducting boron carbonitride nanostructures: Nanotubes and nanofibers. Applied Physics Letters. 2000;(13):1949-1951.
Kumar A, Larsson O, Parodi D, Liang Z. Silanized nucleic acids: a general platform for DNA immobilization. Nucleic acids research [Internet]. 2000;(14):E71. 访问链接
Tang C. Simple models of the protein folding problem. Physica A: Statistical Mechanics and its Applications. 2000;(1-4):31-48.
Vinogradova TM, Zhou Y-Y, Bogdanov KY, Yang D, Kuschel M, Cheng H, Xiao R-P. Sinoatrial node pacemaker activity requires Ca2+/calmodulin-dependent protein kinase II activation. Circulation Research [Internet]. 2000;(9):760-767. 访问链接
Vinogradova TM, Zhou Y-Y, Bogdanov KY, Yang D, Kuschel M, Cheng H, Xiao R-P. Sinoatrial node pacemaker activity requires Ca2+/calmodulin-dependent protein kinase II activation. Circulation Research [Internet]. 2000;(9):760-767. 访问链接
Li SM, Tang J, Xue HS, Toom-Sauntry D. Size distribution and estimated optical properties of carbonate, water soluble organic carbon, and sulfate in aerosols at a remote high altitude site in western China. GEOPHYSICAL RESEARCH LETTERS. 2000;27:1107-1110.Abstract
Measurements at the GAW station in western China reveal the levels and size distributions of chemical components in aerosols. The results indicate similarly high levels of three components, water-soluble organic carbon (WSOC), Ca2++CO3= and NH4++SO4=. Both WSOC and SO4= show a dominant accumulation mode, with a geometric mean mode diameter D-g of 0.41 and 0.34 mu m and geometric standard deviation sigma(sg) of 0.31 and 0.33, respectively. This mode makes up >70% of the total mass of both species. In comparison, Ca2+ and CO3= show a prominent coarse mode with D-g of 2.98 and 1.76 mu m and sigma(sg) of 0.29 and 0.22, respectively, that accounts for >60% of the mass. Based on these characteristics, estimates of the volume scatter coefficient beta, direct back scatter coefficient beta(pi) and mass scattering efficiency phi for each component were made, assuming external mixing and optical and growth characteristics of corresponding pure chemical compounds. The results show that NH4++SO4= has the largest beta, beta(pi) and phi (median 1760x10(-8) m(-1), 79x10(-8) m(-1) sr(-1), and 6.9 m(2) g(-1), respectively). It is followed by WSOC with 1470x10(-8) m(-1), 30x10(-8) m(-1) sr(-1), and 5.3 m(2) g(-1) for beta, beta(pi), and phi, respectively. Ca2++CO3= has only about 10% of the beta and phi values but 20% of the beta(pi) of NH4++SO4= respectively. For both NH4++SO4= and WSOC, the mass scattering efficiency phi is inversely related to their D-g between the size range of 0.2-0.45 mu m.
Ma X, Wang EG, Tilley RD, Jefferson DA, Zhou W. Size-controlled short nanobells: Growth and formation mechanism. Applied Physics Letters. 2000;(25):4136-4138.
Du C, Fang M, Li Y, Li L, Wang X. Smac, a mitochondrial protein that promotes cytochrome c-dependent caspase activation by eliminating IAP inhibition. [Internet]. 2000;(1):33-42. 访问链接

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