四、课题组代表性学术论文(按发表时间倒序排列)
[1] Y. Zheng and J. J. Xu. Kinetic properties of bio-molecules by different noises in the two-dimensional free-energy model. AIP Advances 11, 025318 (2021).
[2] Y. Zheng, R. B. Ren and J.J. Xu, Dynamic disorder characteristics of single-molecule pulling experiments on two-dimensional free-energy landscape. Phys. Lett. A 382, 1791–179 (2018).
[3] 李云赫,洪新*,高畅,牛晓青,唐克. 杂原子介孔分子筛MCM-41的制备及其对含喹啉模拟柴油吸附脱氮性能研究, 燃料化学学报,2019, 47(10): 1195-1203. (EI)., Li Yunhe, Gao Chang, Zhao Yonghua, Tang Ke﹡. Adsorption Removing Various Basic Nitrogen Compounds from Model Diesel over Allochroic Silica Gel. Adsorption Science and Technology, 2018, 36(9-10): 1595-1611. (SCI)
[5] Hong Xin, Tang Ke﹡. Modification and Characterization of NaY Molecular Sieve by Cr3+ and its Adsorptive Denitrogenation from Model Fuel, Petroleum Science and Technology. 2018, 36(24): 2143-2150. (SCI)
[6] 洪新, 李云赫, 高畅, 范博, 张丹, 庞宇莹, 唐克. 不同硅铝比ZSM-5的合成及其吸附脱除模拟燃料中的苯胺或吡啶,燃料化学学报,2018, 46(10): 1184-1192. (EI).
[7] 洪新, 李云赫, 袁加成, 赵永华, 唐 克﹡. 变色硅胶吸附脱除模拟柴油中各种碱性氮化物, 燃料化学学报, 2018, 46(3): 298-304. (EI)..
[8] 洪新, 李云赫, 赵永华, 唐 克﹡. 介孔材料Co-MCM-41的合成及其吸附脱除各种碱性氮化物, 燃料化学学报, 2018, 46(2): 243-250. (EI).
[9] Hong Xin, Tang Ke﹡. Preparation and adsorption denitrogenation from model fuel or diesel oil of heteroatoms mesoporous molecular sieve Co-MCM-41. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2016, 38(17): 2560-2567. (SCI)
[10] Tang Ke, Hong Xin﹡. Preparation and characterization of Co-MCM-41 and its adsorption removing basic nitrogen compounds from FCC diesel oil. Energy and Fuels. 2016, 30(6): 4619-4624. (SCI)
[11] 洪新, 唐克﹡. Cr3+改性NaY分子筛的吸附脱氮性能, 燃料化学学报, 2016, 44(2): 251-256. (EI).
[12] 洪新, 唐克﹡, 丁世洪. 杂原子介孔Co-MCM-41分子筛的制备及其柴油深度吸附脱氮性能. 燃料化学学报, 2016, 44(1): 99-105. (EI).
[13] Hong Xin, Tang Ke﹡. Secondary synthesis of microporous heteroatoms Y zeolite and their hydrodesulfurization properties for model fuel. Key Engineering Materials. 2015, 645-646: 1163-1169. (EI)
[14] Hong Xin, Tang Ke﹡. Adsorptive Denitrogenation of Diesel Oil using a Modified NaY Molecular Sieve. Petroleum Science and Technology. 2015, 33(15-16): 1471-1478. (SCI)
[15] 洪新, 唐克﹡. 杂原子介孔Co-MCM-41分子筛的制备及其吸附脱氮性能. 燃料化学学报. 2015, 43(6): 720-727. (EI).
[16] 洪新, 唐克﹡. 杂原子介孔Ce-MCM-41分子筛的制备及其吸附甲硫醚性能. 燃料化学学报, 2015, 43(4): 456-461. (EI).
[17] 洪新, 唐克﹡. NaY分子筛的改性及吸附脱氮性能,燃料化学学报, 2015, 43(2): 214-220. (EI).
[18] D. J. Li and Y. J. Liu, Adaptive Neural Control with Minimal Learning Parameters for Continuous Stirred Tank Reactor Systems, ICIC Express Letters Part B: Applications, vol. 6, no. 3, pp. 865-870, 2015. (EI)
[19] D. J. Li and D. P. Li, Adaptive Controller Design-Based Neural Networks for Output Constraint Continuous Stirred Tank Reactor, Neurocomputing, Vol. 153, pp. 159-163, 2015. April. (SCI).
[20] D. J. Li, Adaptive neural network control for a two continuously stirred tank reactor with output constraints Neurocomputing, Vol. 167, pp. 451-458, 2015. (SCI).
[21] D. J. Li, Adaptive neural network control for unified chaotic systems with dead-zone input, Journal of Vibration and Control, vol. 21, no. 12, pp. 2446-2451, 2015. (SCI).
[22] P Wang,H Liu,M Liu,R Li,J Ma. Immobilized Pd complexes over HMMS as catalysts for Heck cross-coupling and selective hydrogenation reaction. New Journal of Chemistry, Vol. 38, No. 3, pp. 1138-1144, 2014. (SCI).
[23] TANG Ke, HONG Xin. Application of Bacterium HY9 Strain for Diesel Oil Denitrogenation. Petroleum Science and Technology, 2014, 32(20): 2466-2472. (SCI)
[24] TANG Ke, HONG Xin. A Characterization of Bacterium for FCC Diesel Oil Desulfurization. Petroleum Science and Technology, 2014, 32(13): 1545-1552. (SCI)
[25] D. J. Li, Neural network control for a class of continuous stirred tank reactor process with dead-zone input, Neurocomputing, Vol. 131, pp. 453-459, 5 May 2014. (SCI).
[26] D. J. Li, Li Tang, Adaptive Control for a Class of Chemical Reactor Systems in Discrete-Time Form, Neural Computing & Applications, vol. 24, no. 6, pp. 1807-1814, 2014. (SCI).
[27] D. J. Li, Adaptive Neural Network Control for a Class of Continuous Stirred Tank Reactor Systems, Science China Information Sciences, vol. 57, no. 10, pp. 1-8, 2014. (SCI).
[28] D. J. Li, L. Tang, Y. J. Liu, Adaptive intelligence learning for nonlinear chaotic systems, Nonlinear Dynamics, Vol. 73, No. 4, pp. 2103-2109, 2013. (SCI).
[29] D. J. Li, J. Zhang, Y. Cui, L. Liu, Intelligent Control of Nonlinear Systems with Application to Chemical Reactor Recycle, Neural Computing & Applications. Vol. 23, no. 5, 1495–1502, 2013. (SCI).
[30] Wang,P.,Zhang,F.,Long,Y.,Xie,M.,R.,J. Entangled Pd complexes over Fe3O4@SiO2 as supported catalysts for hydrogenation and Suzuki reactions. Catalysis Science & Technology, Vol. 3, No. 6, pp. 1618-1624, 2013. (SCI).
[31] 唐克, 洪新, 宋丽娟, 孙兆林. 二次合成Y型杂原子分子筛的吸附脱硫研究. 燃料化学学报, 2012, 40(4): 507-512. (EI)
[32] D. J. Li, Adaptive output feedback control of uncertain nonlinear chaotic systems based on dynamic surface control technique, Nonlinear Dynamics, Vol. 68, No. 1-2, pp. 235-243, April, 2012. (SCI).
[33] TANG Ke, HONG Xin, ZHAO Yonghua, WANG Yingguang. Adsorption Desulfurization on a Nano-Crystalline NaY Zeolite Sysnthesized by Using Carbon Nanotube Templated Growth. Petroleum Science and Technology, 2011, 29(8):779-787. (SCI)
[34] Y. Zheng, P. Li, N. R. Zhao and Z. H. Hou, Kinetics of molecular transitions with dynamic disorder in single-moleculepulling experiments. J. Chem. Phys. 138, 204102 (2013). (SCI)
[35] Y. Zheng, Y. K. Bian, N. R. Zhao, and Z. H. Hou, Stretching of single poly ubiquitin molecules revisited: Dynamic disorder in the nonexponential unfolding kinetics. J. Chem. Phys, 140, 125102 (2014). (SCI)
[36] Y. Zheng et al,. Non-polytropic effect on shock-induced phase transitions in a hard-sphere system. Physics Letters A, 374, 3315(2010). (SCI)