南京大學海安高新技術研究院院長,國家科技獎勵項目(材料與冶金組)評審專家、國際期刊Sci. Rep.的編委、國際期刊Frontiers in Materials的客座編輯,江蘇省“333工程”中青年科學技術帶頭人,江蘇省“青藍工程”中青年學術帶頭人,江蘇省“六大人才高峰”高層次人才等培養對象。中國材料研究學會會員,中國復合材料學會常務委員,江蘇省新材料產業協會理事、標準化委員會副主任,江蘇省工程材料領域高新技術企業評審專家,江蘇省科技廳科技咨詢專家,江蘇省教育廳科技專家。
[47]Richao Niu, Rubing Han, Yin Huang, Liming Dai, Hongan Zhao, Yining Wang, Junwu Zhu, Shaochun Tang⁎, Jingwen Sun*, Hydrothermal ion exchange synthesis of CoM(M=Fe or Mn)/MXene 2D/2D hierarchal architectures for enhanced energy storage, Journal of Alloys and Compounds, 894, 162385 (2021).
[48]Hao, Zongbin; He, Xingchen; Li, Hongdou; Trefilov, Denis; Song, Yangyang; Li, Yang; Fu, Xinxin; Cui, Yushuang; Tang, Shaochun*; Ge, Haixiong*; Chen, Yanfeng.Vertically Aligned and Ordered Arrays of 2D MCo2S4@Metal with Ultrafast Ion/Electron Transport for Thickness-Independent Pseudocapacitive Energy Storage.ACS Nano, 2020, 14(10): 12719-12731.
[49]Ding, Yuying; Tang, Shaochun*; Han, Rubing; Zhang, Sheng; Pan, Guanjun; Meng, Xiangkang*.Iron oxides nanobelt arrays rooted in nanoporous surface of carbon tube textile as stretchable and robust electrodes for flexible supercapacitors with ultrahigh areal .energy density and remarkable cycling-stability.Scientific Reports, 2020, 10(1): 11023.
[50]Wang, G J; Cai, Y P; Ma, Y J; Tang, S C*; Syed, J A; Cao, Z H*; Meng, X K*.Ultrastrong and Stiff Carbon Nanotube/Aluminum-Copper Nanocomposite via Enhancing Friction between Carbon Nanotubes.Nano Letters, 2019, 19(9): 6255-6262.
[51]Zhou Yue Wei; Ji Yun Hui; Tan Chang Bin; Song Wei Jie; Xu Liang Liang; Tang Shao Chun*.Preparation and Electrochemical Properties of NiCo2S44@Carbon Nanotube Constructed Flexible Film Electrode for Supercapacitors.Chinese Journal of Inorganic Chemistry, 2019, 35(8): 1419-1426.
[52]Song, Weijie; Wang, Gengjie; Zhao, Dongbo; Zhou, Yuewei; Ding, Yuying; Tan, Changbin; Tang, Shaochun*; Dong, Hao*; Meng, Xiangkang*.Achieving Rich Mixed-Valence Polysulfide/Carbon Nanotube Films toward Ultrahigh Volume Energy Density and Largely Deformable Pseudocapacitors.ACS Applied Materials & Interfaces, 2019, 11(28): 25271-25282.
[53]Su, Yingjie; Ren, Hua; Jiang, Haiping; Tang, Shaochun; Lu, Haiming*; Meng, Xiangkang*.Two-Stage Tunneling-Dominated Electrodeposition for Large-Scale Production of Ultralong Wavy Metal Microstructures on Native Oxide Layer-Passivated Si Electrode with Specific Surface Configuration.Journal of Physical Chemistry C, 2019, 123(26): 16326-16331.
[54]Chen, Gang; Tang, Shaochun*; Song, Yangyang; Meng, Xiangkang; Yin, Jiang; Xia, Yidong*; Liu, Zhiguo.High-intensity compact ultrasound assisted synthesis of porous N-doped graphene thin microsheets with well-dispersed near-spherical Ni2P nanoflowers for energy storage.Chemical Engineering Journal, 2019, 361: 387-397.
[55]Niu Richao; Wang Gengjie; Ding Yuying; Tang Shaochun*; Hu Xuemin; Zhu Junwu*.Hexagonal prism arrays constructed using ultrathin porous nanoflakes of carbon doped mixed-valence Co-Mn-Fe phosphides for ultrahigh areal capacitance and remarkable cycling stability.Journal of Materials Chemistry A, 2019, 7(9): 4431-4437.
[56]Song, Weijie; Wu, Juan; Wang, Gengjie; Tang, Shaochun*; Chen, Gang; Cui, Mingjin; Meng, Xiangkang*.Rich-Mixed-Valence NixCo3-xPy Porous Nanowires Interwelded Junction-Free 3D Network Architectures for Ultrahigh Areal Energy Density Supercapacitors.Advanced Functional Materials, 2018, 28(46): 1804620.
[57]Cui, Mingjin; Tang, Shaochun*; Ma, Yujie; Shi, Xiling; Syed, Junaid Ali; Meng, Xiangkang*.Monolayer standing MnO2-Nanosheet covered Mn3O4 octahedrons anchored in 3D N-Doped graphene networks as supercapacitor electrodes with remarkable cycling stability.Journal of Power Sources, 2018, 396: 483-490.
[58]Ma, Jun; Tang, Shaochun; Syed, Junaid Ali; Su, Dongyun; Meng, Xiangkang*.High-performance asymmetric supercapacitors based on reduced graphene oxide/polyaniline composite electrodes with sandwich-like structure.Journal of Materials Science & Technology, 2018, 34(7): 1103-1109.
[61]Syed, Junaid Ali; Tang, Shaochun; Meng, Xiangkang*.Super-hydrophobic multilayer coatings with layer number tuned swapping in surface wettability and redox catalytic anti-corrosion application.Scientific Reports, 2017, 7(1): 4403.
[62]Xie Hao; Tang Shaochun*; Li Dongdong; Vongehr Sascha; Meng Xiangkang.Flexible Asymmetric Supercapacitors Based on Nitrogen-Doped Graphene Hydrogels with Embedded Nickel Hydroxide Nanoplates.Chemsuschem, 2017, 10(10): 2301-2308.
[63]Tang, Shaochun*; Li, Dongdong; Meng, Xiangkang*.Reply to Comment on "Flexible Asymmetric Supercapacitors Based on Nitrogen-Doped Graphene Hydrogels with Embedded Nickel Hydroxide Nanoplates".CHEMSUSCHEM, 2017, 10(10): 2312-2315.
[64]Shaochun Tang*; Baogang Zhu; Xiling Shi; Juan Wu; Xiangkang Meng.General Controlled Sulfidation toward Achieving Novel Nanosheet-Built Porous Square-FeCo2S4-Tube Arrays for High-Performance Asymmetric All-Solid-State Pseudocapacitors.Adv. Energy Mater., 2017,7: 1601985. Highly Cited Paper (Top 1%)
[65]Hao Xie; Shaochun Tang*; Dongdong Li; Sascha Vongehr; Xiangkang Meng.Flexible Asymmetric Supercapacitors Based on NitrogenDoped Graphene Hydrogels with Embedded Nickel Hydroxide Nanoplates.ChemSusChem, 2016, 9: 1-9.
[66]Tianyu Li; Sascha Vongehr; Shaochun Tang*; Yuming Dai; Xiao Huang; Xiangkang Meng.Scalable Synthesis of Ag Networks with Optimized Sub-monolayer Au-Pd Nanoparticle Covering for Highly Enhanced SERS Detection and Catalysis.Scientific Reports, 2016, 6(37092).
[67]Jian Zhu; Shaochun Tang*; Juan Wu; Xiling Shi; Baogang Zhu; Xiangkang Meng.Wearable High-Performance Supercapacitors Based on Silver-Sputtered Textiles with FeCo2S4–NiCo2S4 Composite Nanotube-Built Multitripod Architectures as Advanced Flexible Electrodes.Adv. Energy Mater.2016, 2016, 1601234.
[68]Syed, Junaid Ali; Tang, Shaochun; Meng, Xiangkang*.Intelligent saline enabled self-healing of multilayer coatings and its optimization to achieve redox catalytically provoked anti-corrosion ability.Applied Surface Science, 2016, 383: 177-190.
[69]Vongehr, Sascha*; Tang, Shaochun.Formation of hollow nanoshells in solution-based reactions via collision coalescence of nanobubble-particle systems.Nanotechnology, 2016, 27(24): 245602.
[70]Vongehr, Sascha; Tang, Shaochun; Meng, Xiangkang*.Adapting Nanotech Research as Nano-Micro Hybrids Approach Biological Complexity, A Review.Journal of Materials Science & Technology, 2016, 32(5): 387-401.
[71]Li, Nanting; Tang, Shaochun; Meng, Xiangkang*.Preparation of Pt-GO composites with high-number-density Pt nanoparticles dispersed uniformly on GO nanosheets.Progress in Natural Science:Materials International , 2016, 26(2): 139-144.
[72]Baogang Zhu; Shaochun Tang*; Sascha Vongehr; Hao Xie; Xiangkang Meng.Hierarchically MnO2−Nanosheet Covered Submicrometer FeCo2O4‑Tube Forest as Binder-Free Electrodes for High Energy Density All-Solid-State Supercapacitors.ACS Appl. Mater. Interfaces, 2016, 8: 4762-4770.
[73]Wan, Neng*; Pan, Wei; Tang, Shao-chun.Multiple value storage based on a nano-electronic-mechanical mechanism using graphene flakes.RSC Advances, 2016, 6(73): 68964-68968.
[74]Ma, Jun; Tang, Shaochun; Syed, Junaid Ali; Meng, Xiangkang*.Asymmetric hybrid capacitors based on novel bearded carbon fiber cloth-pinhole polyaniline electrodes with excellent energy density.RSC Advances, 2016, 6(86): 82995-83002.
[75]Zhu, Baogang; Tang, Shaochun*; Vongehr, Sascha; Xie, Hao; Zhu, Jian; Meng, Xiangkang.FeCo2O4 submicron-tube arrays grown on Ni foam as high rate-capability and cycling-stability electrodes allowing superior energy and power densities with symmetric supercapacitors.Chemical Communications, 2016, 52(12): 2624-2627. Highly cited Paper (Top 1%)
[76]Yongguang Wang; Xiangyu Wang; Bo Sun; Shaochun Tang*; Xiangkang Meng.Concentration-dependent Morphology Control of Pt-coated-Ag Nanowires and Effects of Bimetallic Interfaces on Catalytic Activity.Journal of Materials Science & Technology, 2015, 32: 41-47.
[78]Hao Xie; Shaochun Tang*; Jian Zhu; Sascha Vongehr; Xiangkang Meng.A high energy density asymmetric all-solid-statesupercapacitor based on cobalt carbonate hydroxide nanowire covered N-dopedgraphene and porous graphene electrodes.Journal of Materials Chemistry A, 2015, 3: 18505-18513.
[79]Yongguang Wang; Xiangyu Wang; Shaochun Tang*; Sascha Vongehr; Junaid Ali Syed; Xiangkang Meng*.Highly processible and electrochemically active graphene-doped polyacrylic acid/polyaniline allowing the preparation of defect-free thinfilms for solid-state supercapacitors.RSC Advances, 2015, 5: 62670-62677.
[80]Min Sun; Shaochun Tang; Sascha Vongehr; Lan Chen; Yongguang Wang; Xiangkang Meng*.Shape versus porosity: A systematic survey of cobalt oxide nanosheetcalcination from 200 to 900oC.Materials Letters, 2015, 141: 165-167.
[81]Xiangyu Wang; Pinghui Zhang; Sascha Vongehr; Shaochun Tang; Yongguang Wang; Xiangkang Meng*.Large-scale fabrication of porous bulk silver thinsheets with tunable porosity for high-performance binder-free supercapacitorelectrodes.RSC Advances, 2015, 5: 45194-45200.
[82]Junaid Ali Syed; Shaochun Tang*; Hongbin Lu; Xiangkang Meng*.Smart PDDA/PAA multilayer coatings with enhanced stimuli responsiveself-healing and anti-corrosion ability.Colloids and Surfaces A: Physicochem. Eng. Aspects , 2015, 476: 48-56.
[83]Junaid Ali Syed; Shaochun Tang*; Hongbin Lu; Xiangkang Meng*.Water-Soluble Polyaniline-Polyacrylic Acid Composites as EfficientCorrosion Inhibitors for 316SS.Industrial & Engineering Chemistry Research, 2015, 54: 2950-2959.
[84]Nanting Li; Shaochun Tang; Xiangkang Meng*.Reducedgraphene oxide supported bimetallic cobalt palladium nanoparticles with highcatalytic activity towards formic acid electro-oxidation.Journal of Materials Science & Technology, 2015, 31(1): 30-36.
[85]Junaid Ali Syed; Shaochun Tang; Hongbin Lu; Xiangkang Meng*. Enhanced corrosion protective PANI-PAA/PEI multilayer composite coatings for 316SS by spin coatingtechnique.Applied Surface Science, 2015, 325: 160-169.
[88]Dai, Y. M.; Tang, S. C.; Peng, J. Q.; Chen, H. Y.; Ba, Z. X.; Ma, Y. J.; Meng, X. K.*.MnO2@SnO2 core-shell heterostructured nanorods for supercapacitors.Materials Letters, 2014, 130: 107-110.
[89]Nanting Li; Shaochun Tang; Xiangkang Meng*.Facile Synthesis of Bimetallic Au@Pd Nanoparticles with Core-shell Structures on Graphene Nanosheets.Journal of Materials Science & Technology, 2014, 30(11): 1071-1077.
[90]Li, Nanting; Tang, Shaochun; Dai, Yumin; Meng, Xiangkang*.The synthesis of graphene oxide nanostructures for supercapacitors: a simple route.Journal of Materials Science, 2014, 49(7): 2802-2809.
[91]Dai Y M; Tang S C; Ba Z X; Zhu S S; Wang Q; Wang C; Meng X K*.Coating MnO2 nanowires by silver nanoparticles for an improvement of capacitance performance.Materials Letters, 2014, 117: 104-107.
[92]Dai Yuming; Tang Shaochun; Wang Xiaoyu; Huang, Xiang; Zhu Chao; Hang Zusheng; Meng Xiangkang.MnO2-Au Composite Electrodes for Supercapacitors.Chemistry Letters, 2014, 43(1): 122-124.
[93]Tang, Shaochun; Vongehr, Sascha; Wang, Yongguang; Cui, Juan; Wang, Xiangyu; Meng, Xiangkang*.Versatile synthesis of high surface area multi-metallic nanosponges allowing control over nanostructure and alloying for catalysis and SERS detection.Journal of Materials Chemistry A, 2014, 2(10): 3648-3660.
[94]Tang, Shaochun; Vongehr, Sascha; Wang, Xiangyu; Wang, Yongguang; Meng, Xiangkang*.Bubble-assisted growth of hollow palladium nanospheres with structure control allowing very thin shells for highly enhanced catalysis.RSC Advances, 2014, 4(26): 13729-13732.
[95]Li Nanting; Tang Shaochun*; Dai Yumin; Meng Xiangkang.The synthesis of graphene oxide nanostructures for supercapacitors: a simple route.Journal of Materials Science, 2013, 49(2): 2802-2809.
[96]Dai Yuming; Tang Shaochun*; Vongehr Sascha; Meng Xiangkang.Silver Nanoparticle-Induced Growth of Nanowire-Covered Porous MnO2 Spheres with Superior Supercapacitance.ACS Sustainable Chemistry & Engineering, 2013, 11(2): 1-7.
[97]Y.M. Dai; S.C. Tang; Z.X. Ba; S.S. Zhu; Q. Wang; C. Wang; X.K. Meng*.Coating MnO2nanowires by silver nanoparticles for an improvement of capacitance performance.Materials Letters, 2013, 117: 104-107.
[98]Tang Shaochun; Vongehr Sascha; Wan Neng; Meng Xiangkang*.Rapid synthesis of pentagonal silver nanowires with diameter-dependent tensile yield strength.Materials Chemistry and Physics, 2013, 142(1).
[99]Nanting Li; Shaochun Tang*; Yi Pan; Xiangkang Meng.One-step and rapid synthesis of reduced graphene oxide supported Pt nanodendrites by a microwave-assisted simultaneous reduction.Materials Research Bulletin, 2013, 49(1): 119-125.
[100]Ren, Hua; Tang, Shaochun; Syed, Junaid Ali; Meng, Xiangkang*.Incorporation of silver nanoparticles coated with mercaptosuccinic acid/poly(ethylene glycol) copolymer into epoxy for enhancement of dielectric properties.Materials Chemistry and Physics, 2012, 137(2): 673-680.
[101]Vongehr, Sascha; Tang, Shaochun*; Meng, Xiangkang.Promoting Statistics of Distributions in Nanoscience: The Case of Improving Yield Strength Estimates from Ultrasound Scission.Journal of Physical Chemistry C, 2012, 116(34): 18533-18537.
[102]Shaochun Tang; Sascha Vongehr; Hua Ren; Xiangkang Meng*.Diameter-controlled synthesis of polycrystalline nickel nanowires and their size dependent magnetic properties.CrystEngComm, 2012, 14: 7209-7216.
[103]Tang, Shaochun*; Vongehr, Sascha; Zheng, Zhou; Ren, Hua; Meng, Xiangkang.Facile and rapid synthesis of spherical porous palladium nanostructures with high catalytic activity for formic acid electro-oxidation.Nanotechnology, 2012, 23(25): 1-11.
[104]Hua Ren; Shaochun Tang; Junaid Ali Syed; Xiangkang Meng*.A naphthyl-imide-based epoxy resin: Cure kinetics and application in carbon fiber reinforced composites.High Performance Polymers, 2012, 24(7): 580-588.
[105]Tang, Shaochun; Vongehr, Sascha; He, Guorong; Chen, Lan; Meng, Xiangkang*.Highly catalytic spherical carbon nanocomposites allowing tunable activity via controllable Au-Pd doping.Journal of Colloid and Interface Science, 2012, 375: 125-133.
[106]Lu HongBin; Zhou YouZhen; Vongehr Sascha; Tang ShaoChun; Meng XiangKang*.Effects of hydrothermal temperature on formation and decoloration characteristics of anatase TiO2 nanoparticles.Science China Technological Sciences, 2012, 55(4): 894-902.
[107]Tang, Shaochun*; Vongehr, Sascha; Meng, Xiangkang.Layered spherical carbon composites with nanoparticles of different metals grown simultaneously inside and outside.Nanotechnology, 2012, 23(9): 1-11.
[108]Tang, Shaochun; Zheng, Zhou; Vongehr, Sascha; Meng, Xiangkang*.Facile and rapid synthesis of nickel nanowires and their magnetic properties.Journal of Nanoparticle Research, 2011, 13(12): 7085-7094.
[109]Chen, Lan; Tang, Shaochun; Vongehr, Sascha; Hu, Kun; Meng, Xiangkang*.Scalable synthesis and characterization of cobalt sodium tartrate nanowires with adjustable diameters.Journal of Solid State Chemistry, 2011, 184(11): 3055-3061.
[110]Zheng, Zhou; Tang, Shaochun; Vongehr, Sascha; Meng, Xiangkang*.Square-wave electrochemical growth of lying three-dimensional silver dendrites with high surface-enhanced Raman scattering activities.Materials Chemistry and Physics, 2011, 129(1-2): 594-598.
[111]Vongehr, Sascha; Tang, Shaochun*; Meng, Xiangkang.On the Apparently Fixed Dispersion of Size Distributions.Journal of Computational and Theoretical Nanoscience, 2011, 8(4): 598-602.
[112]Vongehr, Sascha; Tang, Shaochun; Meng, Xiangkang*.Quantitative Analysis of Particle Distributions by Comparison with Simulations.Microscopy and Microanalysis, 2011, 17(1): 61-66.
[113]Tang, Shaochun; Vongehr, Sascha; Zheng, Zhou; Liu, Hanjin; Meng, Xiangkang*.Silver Doping Mediated Route to Bimetallically Doped Carbon Spheres with Controllable Nanoparticle Distributions.Journal of Physical Chemistry C, 2010, 114(43): 18338-18346.
[114]Tang, Shaochun; Vongehr, Sascha; Zheng, Zhou; Meng, Xiangkang.Co dendrite based bimetallic structures with nanoflake-built Pt covers and strong catalytic activity.Journal of Colloid and Interface Science, 2010, 351(1): 217-224.
[116]Tang, Shaochun; Vongehr, Sascha; Wang, Yang; Chen, Lan; Meng, Xiangkang.Ethanol-assisted hydrothermal synthesis and electrochemical properties of coral-like beta-Co(OH)(2) nanostructures.Journal of Solid State Chemistry, 2010, 183(9): 2166-2173.
[117]Meng, X. K.; Tang, S. C.; Vongehr, S. A Review on Diverse Silver Nanostructures.Journal of Materials Science & Technology, 2010, 26(6): 487-522.
[118]Tang, Shaochun; Chen, Lan; Vongehr, Sascha; Meng, Xiangkang.Heterogeneous nucleation and growth of silver nanoparticles on unmodified polystyrene spheres by in situ reduction.Applied Surface Science, 2010, 256(8): 2654-2660.
[119]Vongehr, Sascha; Tang Shao-Chun; Meng Xiang-Kang.Collision statistics of clusters: from Poisson model to Poisson mixtures.Chinese Physics B, 2010, 19(2): 023602.
[120]Lu, H. B.; Hu, Y.; Gu, M. H.; Tang, S. C.; Lu, H. M.; Meng, X. K..Synthesis and characterization of silica-acrylic-epoxy hybrid coatings on 430 stainless steel (vol 204, pg 91, 2009).Surface and Coatings Technology, 2010, 204(9-10): 1658-1658.
[121]Tang, Shaochun; Vongehr, Sascha; Meng, Xiangkang.Carbon Spheres with Controllable Silver Nanoparticle Doping.Journal of Physical Chemistry C, 2010, 114(2): 977-982.
[122]Tang, Shaochun; Vongehr, Sascha; Meng, Xiangkang.Controllable incorporation of Ag and Ag-Au nanoparticles in carbon spheres for tunable optical and catalytic properties.Journal of Materials Chemistry, 2010, 20(26): 5436-5445.
[123]Zhu, Shaopeng; Huang, Jianfeng; Tang, Shaochun; Meng, Xiangkang.Synthesis of Ag microparticles with hierarchical nanostructure on the anode of a galvanic cell.Materials Chemistry and Physics, 2009, 118(2-3): 442-446.
[125]Lu, H. B.; Hu, Y.; Gu, M. H.; Tang, S. C.; Lu, H. M.; Meng, X. K..Synthesis and characterization of silica-acrylic-epoxy hybrid coatings on 430 stainless steel.Surface and Coatings Technology, 2009, 204(1-2): 91-98.
[126]Tang ShaoChun; Meng XiangKang.Controllable synthesis of metal particles by a direct current electrochemical approach.Science in China - Series E: Technological Sciences , 2009, 52(9): 2709-2714.
[127]Tang, Shaochun; Meng, Xiangkang; Lu, Hongbin; Zhu, Shaopeng.PVP-assisted sonoelectrochemical growth of silver nanostructures with various shapes.Materials Chemistry and Physics, 2009, 116(2-3): 464-468.
[128]Tang, Shaochun; Vongehr, Sascha; Meng, Xiangkang.Two distinct branch-stem interfacial structures of silver dendrites with vertical and slanted branchings.Chemical Physics Letters, 2009, 477(1-3): 179-183.
[129]Zhu Shao-Peng; Tang Shao-Chun; Meng Xiang-Kang.Monodisperse Silver Nanoparticles Synthesized by a Microwave-Assisted Method.Chinese Physics Letters, 2009, 26(7): 078101.
[130]Li, P. Y.; Lu, H. M.; Tang, S. C.; Meng, X. K. An in-situ TEM investigation on microstructure evolution of Ni-25 at.% Al thin films.Journal of Alloys and Compounds, 2009, 478(1-2): 240-245.
[131]Li, P. Y.; Lu, H. M.; Cao, Z. H.; Tang, S. C.; Meng, X. K.; Li, X. S.; Jiang, Z. H.Order-disorder transition and Curie transition in Ni70Fe30 nanoalloy.Applied Physics Letters, 2009, 94(21): 213112.
[132]Tang, Shaochun; Meng, Xiangkang; Wang, Changchun; Cao, Zhenhua.Flowerlike Ag microparticles with novel nanostructure synthesized by an electrochemical app roach.Materials Chemistry and Physics, 2009, 114(2-3): 842-847.
[133]Tang, S. C.; Meng, X. K.; Vongehr, S. An additive-free electrochemical route to rapid synthesis of large-area copper nano-octahedra on gold film substrates.Electrochemistry Communications, 2009, 11(4): 867-870.
[134]Tang, Shaochun; Tang, Yuefeng; Vongehr, Sascha; Zhao, Xiaoning; Meng, Xiangkang.Nanoporous carbon spheres and their application in dispersing silver nanoparticles.Applied Surface Science, 2009, 255(11): 6011-6016.
[135]Cao, Z. H.; Liu, P.; Meng, X. K.; Tang, S. C.; Lu, H. M..In situ transmission electron microscopy observations of the crystallization of amorphous Ge films.Applied Physics A-Materials Science & Processing, 2009, 94(2): 393-398.
[136]Wang, Chang-Chun; Shen, Qun-Dong; Tang, Shao-Chun; Wu, Qiang; Bao, Hui-Min; Yang, Chang-Zheng; Jiang, Xi-Qun.Ferroelectric polymer nanotubes with large dielectric constants for potential all-organic electronic devices.Macromolecular Rapid Communications, 2008, 29(9): 724-728.
[137]Tang, Shaochun; Zhu, Shaopeng; Lu, Haiming; Meng, Xiangkang.Shape evolution and thermal stability of Ag nanoparticles on spherical SiO2 substrates.Journal of Solid State Chemistry, 2008, 181(3): 587-592.
[138]Lu, H. M.; Zhao, C. L.; Tang, S. C.; Meng, X. K..Does the nonmagnetic surface layer exist throughout ferromagnetic nanoparticles?Journal of Physical Chemistry C, 2007, 111(50): 18585-18588.
[139]Tang, Shaochun; Tang, Yuefeng; Zhu, Shaopeng; Lu, Haiming; Meng, Xiangkang.Synthesis and characterization of silica-silver core-shell composite particles with uniform thin silver layers.Journal of Solid State Chemistry, 2007, 180(10): 2871-2876.
[140]Lu, H. M.; Ding, D. N.; Cao, Z. H.; Tang, S. C.; Meng, X. K.Surface energy and melting temperature of elemental nanocavities.Journal of Physical Chemistry C, 2007, 111(35): 12914-12917.
[143]Tang Shaochun*; Vongehr Sascha; Wang Xiangyu; Wang Yongguang; Meng Xiangkang.Bubble-assisted growth of hollow palladium nanospheres with structure control allowing monolayer-thin shells for highly enhanced catalysis.RSC Advances.
[2]Bi, Y.; Zhu, D.; Hong, T.; Jing, Y.; Zhang, P.; Tang, S..Insulin glargine as an adjunct to oral antidiabetic drugs for Asians with type 2 diabetes: a pooled analysis to identify predictors of dose and treatment response.52nd Annual Meeting of the European-Association-for-the-Study-of-Diabetes (EASD), 2016-09-12 To 2016-09-16.
[3]Tang, S.; Tang, W.; Wu, W.; Bi, Y.; Zhu, D..Decrement in Rho-kinase 1 and adenylate energy charge contribute to the interactive regulation of insulin and fatty acid on AMPK/SREBP-1c pathway in skeletal muscle cells.52nd Annual Meeting of the European-Association-for-the-Study-of-Diabetes (EASD), 2016-09-12 To 2016-09-16.