论文著作:
[1] X. Yan, C. Zhang, J. Hu, Y. Zhou, Z. Lv, Immobilization of Co nanoparticles into N-doped carbon nanotube on g-C3N4 via coordination-polymerization integrated strategy for efficient H2 evolution reaction at all pH values, Applied Catalysis B: Environmental, 342 (2024).
[2] D. Wang, C. Zhang, J. Hu, T. Zhuang, Z. Lv, Nitriding-reduction fabrication of coralloid CoN/Ni/NiO for efficient electrocatalytic overall water splitting, Journal of Colloid and Interface Science, 655 (2024) 217-225.
[3] P. Qin, C. Zhang, Y. Guo, D. Zhang, Q. Liu, Y. Li, H. Song, Z. Lv, Hydroxyl and amino dual-functionalized core-shell molecular sieves featuring hydrogen bond donor groups for efficient CO2 cycloaddition, Journal of Colloid and Interface Science, 656 (2024) 68-79.
[4] Huiqi Qu, Bin Li, Yiru Ma, Zhenyu Xiao, Zhiguo Lv, Zhenjiang Li, Wei Li and Lei Wang*. Defect-enriched Hollow Porous Carbon Nanocages Enable Highly Efficient Chlorine Evolution Reaction, Advanced Materials, (2023)
[5] Huiqi Qu, Yiru Ma, Xiaolong Li, Yuhao Duan, Yuan Li, Feng Liu, Bin Yu, Minge Tian, Zhenjiang Li, Yueqin Yu, Bin Li d,*, Zhiguo Lv a,c,*, Lei Wang. Ternary alloy (FeCoNi) nanoparticles supported on hollow porous carbon with defects for enhanced oxygen evolution reaction, Journal of Colloid and Interface Science, 645 (2023) 107–114
[6] D. Zhang, C. Zhang, H. Song, Z. Guo, J. Hu, Z. Lv, Advanced bio-inspired Cu3P/g-C3N5@Cu with highly dispersed Cu3P nanoclusters for superior visible-light-driven pollutant degradation, Journal of Cleaner Production, 427 (2023).
[7] C. Zhang, Y. Liu, J. Wang, W. Li, Y. Wang, G. Qin, Z. Lv, A well-designed fencelike Co3O4@MoO3 derived from Co foam for enhanced electrocatalytic HER, Applied Surface Science, 595 (2022).
[8] Zhang, C.; Wang, J.; Liu, Y.; Li, W.; Wang, Y.; Qin, G.; Lv, Z. Electrocatalytic HER Enhancement of C3N4 in NiCo2O4. Chem Asian J 2022, 17 (14), e202200377.
[9] Lv, Z.; Wang, Y.; Liu, Y.; Wang, J.; Qin, G.; Guo, Z.; Zhang, C. NiB as a Substitute for the Pt Cocatalyst in CdS with Enhanced Visible-Light Photocatalytic H2 Production. The Journal of Physical Chemistry C 2022, 126 (21), 9041.
[10] Z. Lv, W. Li, X. Cheng, B. Liu, Z. Guo, T. Zhuang, C. Zhang, Constructing internal electric field in CdS via Bi, Ni co-doping strategy for enhanced visible-light H2 production, Applied Surface Science, 556 (2021).
[11] Zhang, C.; Cheng, X.; Liu, B.; Guo, Z.; He, G.; Lv, Z. Noble-metal-free hexagonal wurtzite CdS nanoplates with exposed (110) and (112) crystal facets for efficient visible-light H2 production. New Journal of Chemistry 2021, 45 (1), 217.
[12] Zhang, C.; Chu, S.; Liu, B.; Liu, Y.; Guo, Z.; Lv, Z. MOF-mediated fabrication of coralloid Ni2P@CdS for enhanced visible-light hydrogen evolution. Applied Surface Science 2021, 569.
[13] Zhang, C.; Liu, B.; Li, W.; Liu, X.; Wang, K.; Deng, Y.; Guo, Z.; Lv, Z. A well-designed honeycomb Co3O4@CdS photocatalyst derived from cobalt foam for high-efficiency visible-light H2 evolution. Journal of Materials Chemistry A 2021, 9 (19), 11665.
[14] Lv, Z.; Li, W.; Cheng, X.; Liu, B.; Guo, Z.; Zhuang, T.; Zhang, C. Constructing internal electric field in CdS via Bi, Ni co-doping strategy for enhanced visible-light H2 production. Applied Surface Science 2021, 556.
[15] Liu X, Wang K, Liu, B, Guo Z, Zhang, C, Lv, Z. Novel WO3/SO42--ZrO2–TiO2 double bridge coordination catalyst hfor oxidation of cyclohexene. Journal of Solid State Chemistry 2021, 300: 122239.
[16] Wang K, Liu X, Liu, B, Guo Z, Zhang, C, Lv, Z. Preparation of carbonyl rhodium polyether guanidinium ionic liquids and application in asymmetric hydroformylation based on homogeneous catalysis-biphasic separation system. Journal of Organometallic Chemistry. 2021, 948: 121931
[17] Z. Lv, X. Cheng, B. Liu, Z. Guo, C. Zhang, Py-COOH modified g-C3N4 nanosheets with enhanced visible-light photocatalytic H2 production, Applied Surface Science, 504 (2020).
[18] C. Zhang, B. Liu, X. Cheng, Z. Guo, T. Zhuang, Z. Lv, A CdS@NiS reinforced concrete structure derived from nickel foam for efficient visible-light H2 production, Chemical Engineering Journal, 393 (2020).
[19] Wang B, Jin M, Guo Z, Lv Z*. Hydrogenation performance of acetophenone to 1-phenylethanol on highly active nano Cu/SiO2 catalyst[J]. Catalysis Letters. 2020, 150(1): 56-64.
[20] Lv Z, Wang J, Zhang S, Wang B, Guo Z, Zhang C. Highly selective hydrogenation of acetophenone over supported amorphous alloy catalyst[J]. Applied Organometallic Chemistry. 2020, e5555.
[21] Lv Z, Zhang S, Guo Z, Cheng X, Wang J, Zhang C. Synthesis of alcohol ester 12 in 1, 8-diazabicyclo [5.4.0] undec-7-ene (DBU)-based Self-separation catalytic system. Applied Organometallic Chemistry. 2019, 33(10): e5145.
[22] Lv Z, Cheng X, Liu B, Guo Z, Jin M, Zhang C. Enhanced photoredox water splitting of Sb-N donor-acceptor pairs in TiO2[J]. Inorganic Chemistry Frontiers. 2019, 6(9): 2404-2411.
[23] Zhang C, Liu B, Cheng X, Guo Z, Zhuang T, Lv Z*. Noble-metal-free CdS decorated porous NixCo1-xO skeleton derived from metal–organic framework for efficient visible-light H2 production[J]. ACS Applied Energy Materials, 2019.
[24] Song Y, Lv Z*, Guo Z. Study on Hydroformylation of Octene Catalyzed by Rhodium-Containing Functional Ionic Liquid[C]. IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2019, 490(2): 022075.
[25] Jin M, Wang J, Wang B, Guo Z, Lv Z*.Highly effective green oxidation of aldehydes catalysed by recyclable tungsten complex immobilized in organosilanes-modified SBA-15[J]. Microporous Mesoporous Mater. 2019, 277(84-94).
[26] Wang B, Zhang C, Wang J, An H, Guo Z, Lv Z*.Study on nano Cu/SiO2 catalysts for highly selective hydrogenation of acetophenone[J]. Applied Organometallic Chemistry. 2019,33(8): e5000.
[27] Manman Jin, Guodi Zhang, Zhenmei Guo, Zhiguo Lv*.Tungsten doped mesoporous SBA-16 as novel heterogeneous catalysts for oxidation of cyclopentene to glutaric acid. Applied Organometallic Chemistry, 2018, 32(5): e4317.
[28] Manman Jin, Zhenmei Guo, Zhiguo Lv*. Immobilization of tungsten chelate complexes on functionalized mesoporous silica SBA-15 as heterogeneous catalysts for oxidation of cyclopentene. Journal of Materials Science, 2019, 54(9): 6853-6866.
[29] Manman Jin, Zhenmei Guo, Zhiguo Lv*. Synthesis of convertible {PO4[WO3W(O)2(O2)]4}-DMA16 in SBA-15 nanochannels and its catalytic oxidation activity. Catalysis Letters, 2019, 149(10): 2794-2806.
发明专利:
[1]吕志果,郭振美,柳培,张伟伟.一种甘油制备丙二醇的方法.2015,中国,授权专利号:ZL201210419541.9.
[2]吕志果,郭振美,王恒生.一种由环氧乙烷制备3-羟基丙酸酯及1,3丙二醇的方法.2013,中国,授权专利号:ZL201010501535.9.
[3]吕志果,郭振美,聂涛,陈强,王志会.一种由1-(4-异丁基苯基)乙醇制备2-(4-异丁基苯基)丙酸酯的方法.2013,中国,授权专利号:ZL200710114367.5.
[4]吕志果,赵正康,郭振美,应于舟,杨菊群,张旭红,冯看卡.一种3-羟基丙酸酯加氢制备1,3-丙二醇的催化剂及制备方法.2011,中国,授权专利号:ZL200710114367.5.
[5]吕志果,赵正康,郭振美,应于舟,杨菊群,张旭红,冯看卡.一种3-羟基丙酸酯加氢制备1,3-丙二醇的方法.2011,中国,授权专利号:ZL200710114366.
[6]吕志果,宋湛谦,郭振美.一种N-烷基芳胺的制备方法.2009,中国,授权专利号:ZL200610149056.9.
[7]吕志果,郭振美,聂涛,陈强,王志会.一种由1-(4-异丁苯基)乙醇制备2-(4-异丁苯基)丙酸酯的方法.2014,中国,授权专利号:ZL20131004893.0.