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成果及论文

一、教研论文(6篇北大核心

25.熊新,朱彦硕,吕春杰,刘青,舒朋华*. 制药设备与车间设计课程“一锅式”教学模式研究[J]. 内蒙古石油化工, 2025, 51(8): 65-68.

24.吕春杰,刘青,熊新,舒朋华*. 基于PBL理念的化工原理实验设计—以“吸收与精馏优化”为例[J].广州化工, 2025, 53(14),201-203.

23.孙娜,舒朋华*,李公春,鞠志宇,曹玉松,韩彦航. “任务驱动+案例分析”混合式教学在药理学课程中的探索[J].海峡药学, 2025, 37(4):32-36.

22.孙娜,舒朋华*,张克娜,李公春,张彦岭,韩彦航,孙军涛. “任务驱动+案例分析”混合式教学在药理学课程中的探索[J].海峡药学, 2024, 36(5): 57-60.

21. 肖付刚,舒朋华,孙军涛,王德国,张永清. 新工科背景下现代产业学院的建构与实践路径研究[J].中国现代教育装备,2024(7): 75-78.

20.舒朋华, 孙娜, 朱彦硕, 蔡清伟, 魏夏兰, 张克娜, 肖付刚*.奥尔堡PBL模式应用于药物分析实验思政教学[J].海峡药学, 2023, 35(8): 51-55.

19.孙娜, 舒朋华*, 吕春杰 , 李公春, 曹玉松, 孙军涛. 基于线上线下结合任务驱动策略的《工业药剂学》课程思政教学设计与实践[J].海峡药学, 2023, 35(7): 64-67.

18.刘青, 张时星, 吕春杰, 孙娜, 熊新, 杨海堂, 舒朋华*. 对分课堂在有机波谱分析课程中的应用[J]. 药学教育, 2023, 39(1): 55-58+63.

17.孙娜, 舒朋华*, 李公春, 吕春杰. 线上线下相结合的“任务驱动式”教学模式在工业药剂学中的应用探索[J]. 海峡药学, 2022, 34(8): 87-91.

16.朋华孙娜*, 刘青,魏夏兰,吕春杰,熊新,杨海堂,肖付刚*奥尔堡PBL模式应用于制药工程专业导论教学实践[J].中国药事, 202236(10): 1210-1214.

15.吕春杰, 刘青, 孙娜, 舒朋华*. 新工科背景下化工原理教学改革探索[J]. 广州化工, 2022, 50(23): 189-191.

14.吕春杰刘青, 孙娜, 舒朋华*化工原理课程思政教学探索与实践[J]. 云南化工, 2022, 49(3): 128-130.

13.孙娜, 舒朋华, 刘青, 吕春杰. 线上线下相结合的“翻转式”教学模式在药事管理与法规课程中的应用[J]. 中国药事2021, 35(7): 841-846.

12.鞠志宇, 舒朋华, 谢智宇, 李公春. 遵循OBE理念的制药工程专业认识实习教学设计与实施[J]. 化学教育2020, 41(2): 71-75.(北大核心)

11.舒朋华孙娜, 肖付刚*, 孙军涛, 曹玉松, 蔡清伟, 吕春杰*, 魏夏兰. 奥尔堡PBL模式在课程思政教学中的应用—以《药物分析》课程为例[J].中国药事, 2021, 35(11): 1322-1326.

10.舒朋华*魏夏兰, 于冬宏, 鞠志宇. 奥尔堡PBL模式对我国应用型人才培养的启示[J]. 长春教育学院学报2020, 36(8): 4-10.

9.舒朋华*李闪闪, 燕小然, 程妍. 奥尔堡PBL模式在药物分析教学中的应用[J]. 中华医学教育探索杂志2020, 19(4): 394-397.

8.舒朋华*魏夏兰, 鞠志宇, 孙娜, 许志红.“雨课堂+奥尔堡PBL模式”用于化学信息检索教学[J]. 化学教育2020, 41(14):85-90.(北大核心)

7.舒朋华*魏夏兰,  鞠志宇, 李闪闪, 张彦岭, 孙燕华. 基于奥尔堡PBL模式的有机实验教学改革[J]. 实验技术与管理2020, 37(2), 157-159+173.(北大核心)

6.舒朋华*魏夏兰, 鞠志宇, 吴长增. 奥尔堡PBL模式下的课程整合与应用型人才培养[J]. 西南师范大学学报(自然科学版)2019, 44(3): 146-150.(北大核心)

5.舒朋华*魏夏兰, 孙梦圆, 徐海畅, 杨雪, 唐荣平, 易文翰. 奥尔堡PBL模式在大学生科研训练中的应用[J]. 实验技术与管理2019, 36(1): 245-248.(北大核心)

4.舒朋华*魏夏兰, 许志红. 应用型人才培养为导向的文献检索教学改革[J]. 河北广播电视大学学报2018, 23(3): 77-80.

3.舒朋华鞠志宇, 谢智宇, 魏夏兰*, 徐丹. 面向应用型人才培养的药物分析实验教学改革[J]. 基础医学教育2018, 20(11): 55-58.

2.舒朋华*魏夏兰, 牛亮峰, 李闪闪, 张彦岭. PBL对文献检索课教学改革的启示[J]. 药学教育2018,34(6):61-64.

1.舒朋华*, 鞠志宇, 许志红, 吴长增. 奥尔堡PBL模式对提升有机波谱分析教学效果的启示[J]. 化学教育, 2018, 39(16): 16-20.(北大核心)

二、科研论文

(一)SCI/EI期刊收录论文

55.熊新,曹霄琴,刘嘉煜,刘馥楠,李明鉴,张子怡,介百佳,舒朋华 .* 用于锌离子和草甘膦检测的荧光探针的合成及应用[J/OL].分析试验室,2025,DOI: 11.2017.TF.20251031.1820.026.

54.Shu, P.*#; Fan, S.#; Liu, S.#; Meng, Y.; Wang, N.; Guo, S.; Yin, H.; Hu, D.; Fan, X.; Chen, S.; He, J.; Guo, T.; Zou, W.; Zhang, L.; Wei, X.; Huang, J*. Ultrasound-assisted deep eutectic solvent extraction of flavonoids from Cercis chinensis seeds: Optimization, kinetics and antioxidant activity. Separations 2025, 12, 269. (中科院3区)

53.Shu, P.*#; Wang, N.#; Meng, Y.#; Fan, S.; Liu, S.; Fan, X.; Hu, D.; Yin, H.; Wang, H.; Wang, X.; Wu, M.; Yu, F.; Wei, X.; Zhang, L.; Huang, J.Ultrasound-assisted deep eutectic solvent extraction of polysaccharides from Cercis chinensis bark: Optimization, kinetics and antioxidant activitiesUltrason. Sonochem. 2025, 121,107535.(中科院1区Top, IF=9.7)

52.Meng, Y., Zou, W., Guo, T., Zhang, L., Zhang, P*., Shu, P. *Optimization of ultrasound-assisted deep eutectic solvent extraction,  characterization, and bioactivities of flavonoids from Cercis glabra leaves, Ultrason. Sonochem. 2025,120,107434.(中科院1区Top, IF=9.7)

51.Sun, N.*; Wang, R.; Lv, M.; Feng, X.; Gong, Q.; Du, M.; Han, C.; Sun, M.; Li, X.; Liu, Y.; Zhang, L.; Huang, J.*Shu, P.* Phytochemistry, biological activities, and anti-inflammatory/analgesic effects of Cercis chinensis: A comprehensive review. Chem. Biodiversity 2025, 22(12), e01883.(中科院3区)

50.Sun, N.*; Wang, Y.; Zhou, C.; Kang, H.; Wang, R.; Feng, X.; Ma, S.; Jin, L.; Zhang, X.; Shu, P.* A review of pharmacological effects and bioactive constituents of Euonymus alatus. Phytochem. Lett. 2025, 68,103003.(中科院4区)

49.杨海堂,舒朋华*,刘文林,马文博,杨子俊,邓志峰,张馨匀,卫伟*.电化学传感技术用于端粒酶活性检测的研究进展 [J].分析化学, 2025, 53(6),864-874.(中科院3区)

48.Zhu, Y.; Zhang W.; Wang, H.; Li, D.; Xie, X.; Hu, H.; Shu, P.* Metal-free remote site-selective radical C(sp3 )–H acyloxylation of amides. New J. Chem. 2025, 49, 5062.(中科院3区)

47.熊新,王知逸,何梦宇,介百佳,张迎乐,刘芳雅,贺佳琦,舒朋华*.基于喹啉-苯基噁唑类铜离子荧光探针的合成及应用[J].分析试验室, 2025, 44(6), 868-874.(EI)

46.熊新,介百佳,刘芳雅,张迎乐,王知逸,何梦宇,舒朋华*.基于香豆素-苯并噻唑类荧光探针的合成及铜离子和镍离子检测.分析试验室, 2025, 44(5), 741-747.(EI)

45.Yang, H.; Pu, S.; Shu, P.*; Wang, J.; Chen, Y.; Yang, X.; Hou, Y.; Wei, W*. A label-free electrochemical biosensor for sensitive analysis of the PARP-1 activity. Bioelectrochemistry 2025, 163, 108891.(中科院2区)

44.Zhang, X.; Li, M.; Li, S.; Su, J.; Wei, L.; Yuan, Y.; Shu, P.; Tang, K. A green deep eutectic solvent-based aqueous two-phase system combined with chemometrics for flavonoids extracting and detecting in honey. Food Chemistry: X, 2024, 24, 101932.(中科院1区Top)

43.Meng, Y.; Zang, S.; Wang, X.; Wang, H.; Deng, J.; Wu, M.; Guo, T.; Zou, W.; Xiao, F.; Zhang, L.; Zhang, P.* Shu, P.* Phytochemistry and pharmacology of genus Cercis: A review.  Rec. Nat. Prod. 2024, 18(4),380-392.(中科院4区)

42.Sun, N.*; Wang, Y.; Ma, S.; Kang, H.; Zhou, C.; Jin, L.; Zhang, X.; Zhang, Y.; Yuan, Y.; Shu, P.* A review of the phytochemistry and biological activities of Echinopsis Radix.  Molecules 2024, 29,2267.(中科院2区)

41.Sun, N.*; Ma, S.; Jin, L.; Wang, Y.; Zhou, C.; Zhang, X.; Kang, H.; Yuan, Y.; Zhang, Y.; Yang, H.; Zhou, M.; Shu, P.* Unveiling the anticancer mechanism of Echinops davuricus: isolation and evaluation of AKR1B10 inhibitors. Chem. Biodiversity 2024, e202302053.(中科院3区)

40.Sun, N.*; Ma, S.; Jin, L.; Wang, Y.; Zhou, C.; Zhang, X.; Kang, H.; Zhou, M.; Yang, H.; Shu, P.* Development of AKR1B10 inhibitors from Ajuga nipponensis based on diseases and targets. Fitoterapia, 2024, 172, 105742.(中科院3区)

39.Shu, P.; Cai, S.; Zhao, X.; Zang, S.; Li, R.; Ge, Y.; Lu, X.; Wei, X.; Yang, Y.; Yang, H.*; Sun, N*,Chemical constituents from the roots of Rehmannia glutinosa. Rec. Nat. Prod. 2023, 17(4), 615-621. (中科院4区)

38.Zhu, Y.; Wang, H.; Shu, P.; Zhang, K.; Wang, Q. Recent advances on alkoxy radicals-mediated C(sp 3 )–H bond func-tionalization via 1,5-hydrogen atom transfer. Chinese J. Org. Chem. 2024, 44(1), 1-17.(中科院3区)

37.Shu, P.; Li, N.;  Zhang, J.; Yang, Y.; Zhao, Q.; Liu, G.; Zhang, H.; Zhao, X.; Lou, Y.; Xu, T.; Liu, Q.*; Xiao, F.* Natural glycosidic antioxidants from Cynanchum atratum roots. Carbohydr. Res. 2023, 523, 108729.(中科院3区)

36.Sun, N.; Yang, H.; Zhou, M.; Hou,Y.; Wu, X.; Li, W.; Zhang, Y.; Sun, J.; Xiong, X.; Huang, J.; Shu, P.* Isolation and evaluation of antioxidants from Arisaema heterophyllum tubres. Phytochem. Lett. 2023, 53, 106-110.(中科院4区) 

35. Xu, T.#; Lou, Y.#Ge, Y.; Lu, X.; Zhang, P.*Shu, P.* A new monoterpene Rhamnoside from Cercis glabra legumes. Rec. Nat. Prod. 202317(2), 335-342.(中科院4区)

34. Sun, N.; Du, T.; Zhang, Y.; Luo, Y.; Ma, X.; Zhang, R.; Wu, X.; Yang, H.; Zhou, M.; Shu, P.*; Huang, J.* Secondary metabolites with antioxidant and mushroom tyrosinase inhibitory activities from Ajuga nipponensis. Rec. Nat. Prod. 2023, 17(1), 99-105.(中科院4区)  

33. Lou, Y.#; Xu, T.#Cao, H.; Zhao, Q.; Zhang, P.*; Shu, P.* Natural antioxidants, tyrosinase and acetylcholinesterase inhibitors from Cercis glabra leavesMolecules 2022, 27, 8667.(中科院2区)

32. Sun, N.*;  Yang, H.;  Zhou, M.;  Hou, Y.;  Wu, X.;  Li, W.;  Liu, H.;  Zheng, L.;  Sun, J.;  Jin, L.;  Ma, S.; Shu, P.*, A review of chemical constituents from Ajuga nipponensis and their anti-inflammatory activities analysis. Biochem. Syst. Ecol. 2022, 105, 104531.(中科院4区)

31.Shu, P.; Zhang, H.; Li, N.; Zhang, J.; Liu, G.; Yang, Y.; Zang, S.; Cai, S.; Wei, X.; Sun, N.*; Xiao, F.* Natural tyrosinase inhibitors from Betula platyphylla barks. Holzforschung 2022, 76(7), 674-678.(中科院2区) 

30.Shu, P.; Luo, Y.; Zhu, H.; Li, Y.; Fei, Y.; Yu, M.; Xu, T.; Lou, Y.; Xiao, F.*; Huang, J.* Secondary metabolites with tyrosinase and acetylcholinesterase inhibitory activities from Leonuri Fructus. Rec. Nat. Prod. 202216(5), 417-425.(中科院4区)  

29.Shu, P.; Yang, Y.; Zhang, H.; Li, N.; Liu, G.; Zhang, J.; Zhao, Q.; Wei, X.; Yi, W.; Sun, N.*; Xiao, F.* Isolation and characterization of antioxidative monoterpenes from Cynanchum atratum roots. Biosci. Biotechnol. Biochem202286(5), 585-589. (中科院4区) 

28.Shu, P.; Fei, Y.; Li, Y.; Xu, T.; Lou, Y.; Yang, Y.; Zhang, H.; Li, N.; Wei, X.; Xiao, F.*;  Huang, J.* Isolation and characterization of bioactive phenolic compounds from Cinnamomum camphora barks.  Holzforschung 2022, 76(4), 391-396.(中科院2区) 

27.Shu, P.*; Yu, M.;  Li, Y.; Luo, Y.; Liu, H.; Zhu, H.; Zhang, J.; Zhang, L.; Wei, X.; Xiao, F.* Synthesis of cinnamoyl glucoside derivatives and their antiproliferation activities against murine melanoma B16-F10 cell line. Carbohydr. Res. 2021, 504, 108332.(中科院3区)

26.Shu, P.*; Zhu, H.; Liu, W.; Zhang, L.; Li, J.;Yu, M.; Fei, Y.; Cai, S.; Li, R.; Wei, X.; Yi, W.; Xiao, F.* Isolation and characterization of glycosidic tyrosinase inhibitors from Typhonium giganteum rhizomes. Rec. Nat. Prod. 2021,15(5),380-387.(中科院4区)

25.Shu, P.*; Yu, M.; Zhu, H.; Luo, Y.; Li, Y.; Li, N.; Zhang, H.; Zhang, J.; Liu, G.; Wei, X.; Yi, W.* Two new iridoid glycosides from Gardeniae Fructus. Carbohydr. Res. 2021, 501, 108259.(中科院3区)

24.Zhao, X.; Wu, B.; Shu, P.; Meng, L.; Zeng, J.; Wan, Q.* Rhenium(V)-catalyzed synthesis of 1,1-2-deoxy thioglycosides. Carbohydr. Res., 2021, 508, 108415.(中科院3区)

23.Shu, P.* Li, Y.; Luo, Y.; Yu, M.;Fei, Y.; Liu, W.; Yang, Y.; Wei, X.; Zhang, Y.; Tu, T.; Zhang, L.* Isolation, characterization and antioxidant, tyrosinase inhibitory activities of constituents from the flowers of Cercis glabra ‘Spring-1’ Rec. Nat. Prod. 2021, 15(4),254-260.(中科院4区)  

22.Shu, P.* Zhang, L.; Liu, W.; Fei, Y.; Sun, M.; Lou, Y.; Liu, A.;Yu, M.; Li, J.;  Wei, X.; Sun, N.* Chemical constituents from Typhonium giganteum rhizome and their antioxidant, tyrosinase inhibitory activitiesRec. Nat. Prod. 2021, 15(1), 53-58.(中科院4区)

21.Shu, P.* Zhang, L.; Liu, A.; Li, J.; Liu, Q.; Sun, N.; Zhang, Y.; Wei, X.; Cui, M.; Ju, Z.; Xu, Z*, Six natural phenylethanoid glycosides: total synthesis, antioxidant and tyrosinase inhibitory activities. ChemistrySelect 2020, 35, 10817-10820.(中科院4区)

20.Shu, P.* Fei, Y.; Li, J.; Liu, A.; Zhang, L.;Niu, H.; Liu, W.; Wei, X.; Xiao, F.; Xu, Z.* Two new phenylethanoid glycosides from Ginkgo biloba leaves and their tyrosinase inhibitory activities. Carbohydr. Res. 2020, 494, 108059.(中科院3区)

19.Shu, P.*Niu, H.; Zhang, L.; Xu, H.; Yu, M.; Li, J.; Yang, X.; Fei, Y.; Liu, H.; Ju, Z.; Xu, Z*. Regioselective dechloroacetylations mediated by ammonium acetate: practical syntheses of 2,3,4,6-tetra-O-chloroacetyl-glycopyranoses and cinnamoyl glucose esters.  ChemistrySelect 2020, 5, 6360-6364.(中科院4区) 

18.Shu, P.*; Li, J.; Fei, Y.; Zhu, H.; Zhang, L.; Niu, H.; Li, Y.; Liu, H.; Ju, Z.; Wei, X.; Xiao, F.; Xu, Z*. Angelicosides I-IV, four undescribed furanocoumarin glycosides from Angelica dahurica roots and their tyrosinase inhibitory activities.  Phytochem. Lett. 2020, 36: 32-36.(中科院4区)

17.Shu, P.*; Li, J.; Fei, Y.; Zhu, H.; Yu, M.; Liu, A.; Niu, H.; Zou, S.; Wei, X.; Ju, Z.; Xu, Z*. Isolation, structure elucidation, and antioxidant evaluation of constituents from Angelica dahurica roots. J. Nat. Med. 2020, 74(2), 456-462.(中科院3区) 

16.Shu, P.*; Sun, M.; Li, J.; Zhang, L.; Xu, H.; Lou, Y.; Ju, Z.; Wei, X.; Wu, W.; Sun, N.* Chemical constituents from Ginkgo biloba leaves and their cytotoxicity activity. J. Nat. Med. 2020,74(1), 269-274.(中科院3区) 

15. Shu, P.*; Sun, M.; Xu, H.; Yang, X.; Niu, H.; Geng , M.; Ju, Z.* A new alcohol compound isolated from the leaves of Ginkgo Biloba. Chem. Nat. Compd. 2019, 55 (6), 1059-1061.(中科院4区)

14. Ju, Z.*; Shu, P.; Xie, Z.; Jiang, Y.; Tao, W.; Xu, Z*. A flavone-based fluorescent probe for hydrazine and its bioimaging in live cellsChin. J. Org. Chem., 2019, 39(3): 697-702.(中科院3区)

13. Liu, Y.; Zeng, J.; Sun, J.; Cai, L.; Zhao, Y.; Fang, J.; Hu, Bo.; Shu, P.; Meng, L.; Wan, Q.* 1,4-Dithiothreitol mediated cleavage of the acetal and ketal type of diol protecting groups. Org. Chem. Front., 2018, 5(16), 2427-2431.(中科院2区)  

12. Zhao, Y.; Zeng, J.; Liu, Y.; Xiao, X.; Sun G.; Sun, J.; Shu, P.; Fu, D.; Meng, L.; Wan, Q.* Collective syntheses of phenylethanoid glycosides by interrupted Pummerer reaction mediated glycosylations. J. Carbohydr. Chem., 2018, 37(9), 471-497. (中科院4区) 

11. Xiao, X.; Zhao, Y.; Shu, P.; Zhao, X.; Liu, Y.; Sun, J.; Zhang, Q.; Zeng, J.; Wan, Q.* Remote activation of disarmed thioglycosides in latent-active glycosylation via interrupted Pummerer reaction. J. Am. Chem. Soc. 2016, 138(40), 13402-13407.(中科院1区) 

10. Shu, P.; Yao, W.; Xiao, X.; Sun, J.; Zhao, X.; Zhao, Y.; Xu, Y.; Tao, J.; Yao, G.; Zeng, J.; Wan, Q.* Glycosylation via remote activation of anomeric leaving groups: development of 2-(2-propylsulfinyl)benzyl glycosides as novel glycosyl donors. Org. Chem. Front. 2016, 3(2), 177-183.(中科院2区)  

9. Shu, P.; Xiao, X.; Zhao, Y.; Xu, Y.; Yao, W.; Tao, J.; Wang, H.; Yao, G.; Lu, Z.; Zeng, J.; Wan, Q.* Interrupted Pummerer reaction in latent-active glycosylation: glycosyl donors with a recyclable and regenerative leaving group. Angew. Chem. Int. Ed. 2015, 54(48), 14432-14436.(中科院1区Top  

8. Shu, P.; Zeng, J.; Tao, J.; Zhao, Y.; Yao, G.; Wan, Q.* Selective S-deacetylation inspired by native chemical ligation: practical syntheses of glycosyl thiols and drug mercapto-analogues. Green Chem. 2015, 17(4), 2545-2551.(中科院1区Top)   

7. Shu, P.; Wei, X.; Xue, Y.; Li, W.; Zhang, J.; Xiang, M.; Zhang, M.; Luo, Z.; Li, Y.; Yao, G.*; Zhang, Y.* Wilsonols A-L, megastigmane sesquiterpenoids from the leaves of Cinnamomum wilsonii. J. Nat. Prod. 2013, 76(7), 1303-1312.(中科院2区)

6. Zhang, M.; Xie, Y.; Zhan, G.; Lei, L.; Shu, P.; Chen, Y.; Xue, Y.; Luo, Z.; Wan, Q.; Yao, G.*; Zhang, Y.* Grayanane and leucothane diterpenoids from the leaves of Rhododendron micranthum. Phytochemistry 2015, 117, 107-115.(中科院2区)

5. Zeng, J.; Xue, Y.; Shu, P.; Qian, H.; Sa, R.; Xiang, M.; Li, X.-N.; Luo, Z.; Yao, G.*; Zhang, Y.* Diterpenoids with immunosuppressive activities from Cinnamomum cassia. J. Nat. Prod. 2014, 77(8), 1948-1954.(中科院2区)

4. Zhang, M.; Zhu, Y.; Zhan, G.; Shu, P.; Sa, R.; Lei, L.; Xiang, M.; Xue, Y.; Luo, Z.; Wan, Q.; Yao, G.*; Zhang, Y.* Micranthanone A, a new diterpene with an unprecedented carbon skeleton from Rhododendron micranthum. Org. Lett. 2013, 15(12), 3094-3097.(中科院1区Top)

3. Zheng, H.; Chen, Q.; Zhang, M.; Lai, Y.; Lei, L.; Shu, P.; Zhang, J.; Xue, Y.; Luo, Z.; Li, Y.; Yao, G.*; Zhang, Y.* Cytotoxic ent-kaurane diterpenoids from Salvia cavaleriei. J. Nat. Prod. 2013, 76(12), 2253-2262.(中科院2区) 

2. Wei, X.; Shu, P.;Liu, T.; Xiang, M.;Zhang, J.; Xue, Y.;Luo, Z.; Yao, G.*; Zhang, Y.* Steroids and phenylpropanoids with immunomodulatory activities from the stem barks of Cinnamomum wilsonii. Chinese J. Org. Chem. 2013, 33(6), 1273-1278.(中科院3区)  

1. Guo, J.; Zhang, J.; Shu, P.; Kong, L.; Hao, X.; Xue, Y.; Luo, Z.; Li, Y.; Li, G.; Yao, G.* Zhang, Y.* Two new diterpenoids from the buds of Wikstroemia chamaedaphne. Molecules 2012, 17, 6424-6433. (中科院2区)

(二)北大核心期刊收录论文

13.熊新,介百佳,张迎乐,刘芳雅,曹霄琴,刘嘉煜,舒朋华*. 基于香豆素类Cu2+和Ni2+荧光探针的合成及应用[J]. 化学研究与应用, 2025, 37(10): 3087-3095.

12.熊新,介百佳,刘芳雅,张迎乐,王知逸,何梦宇,舒朋华*. 香豆素-噻吩类Cu2+荧光探针的合成及应用[J]. 化学研究与应用, 2025, 37(8): 2229-2236.

11.曹桦强,徐婷,文思淼,舒朋华,张彭湃. 基于网络药理学探讨紫荆荚果提取物治疗阿尔茨海默症的作用机制[J].河南师范大学学报(自然科学版), 2025, DOI: 1000-2367.2024.09.23.0002.

10.邓嘉惠,王慧莹,王鑫,孟玉,郭婷婷,贺佳琦,褚俊豪,樊淑贤,舒朋华*,张彭湃*.有柄石韦化学成分与生物活性的研究进展. 中华中医药学刊,2025,43(3),136-142.(中医药领域高质量T1区期刊

9.舒朋华*,李亚敏,何林烨,刘文格,易新,喻峰,吴梦姣,孙娜*. 佩兰化学成分及生物活性研究进展. 中华中医药学刊,2024,42(4),40-46.中医药领域高质量T1区期刊

8. 舒朋华*,李念慈,赵秋悦,刘光伟,杨远,张慧,蔡舒静,臧硕,孙娜*.小驳骨化学成分与生物活性的研究进展. 中华中医药学刊,2024,42(3),126-132.中医药领域高质量T1区期刊

7. 舒朋华*,刘光伟,张家龙,杨远,赵秋悦,李念慈,张慧,熊新*.白桦皮化学成分与药理作用的研究进展. 中华中医药学刊,2023,41(6),43-49.(中医药领域高质量T1区期刊

6. 舒朋华*,罗跃辉,刘婉蓉,李亚敏,喻梦竹,李念慈,杨远,费莹莹,孙娜*. 茺蔚子化学成分与药理作用的研究进展. 中华中医药学刊,2022,40(7),39-43.(中医药领域高质量T1区期刊

5. 孙娜* ,刘佳艺,方凯兴,任玉龙,张一方,罗一鸣,杨玉涵,侯艳艳,李文倩,舒朋华*漏芦药理作用及临床应用研究进展. 中华中医药学刊,202240(9),108-111.中医药领域高质量T1区期刊

4. 孙娜,刘佳艺,于婉莹,刘素素,任玉龙,方凯兴, 舒朋华*. 天南星化学成分及生物活性研究进展. 中国中药杂志2021, 46,5194-5200.中医药领域高质量T1区期刊

3. 舒朋华*,喻梦竹,李亚敏,刘安琦,刘婉蓉,罗跃辉, 刘昊, 孙娜, 魏夏兰. 白薇化学成分与药理作用的研究进展. 中国药房2021, 32(2),253-256.

2. 舒朋华*柏湘豫娄月月徐海畅杨雪孙梦圆牛浩莹张凌翔禹白附化学成分及药理作用研究进展中国药房2019, 30(10), 1432-1436. 

1. 舒朋华唐荣平李军萍鞠志宇牛亮峰魏夏兰许志红*. 禹白附化学成分研究时珍国医国药2019, 30(5), 1058-1060.中医药领域高质量T2区期刊

(三)CSCD期刊

2.孙娜*马烁,靳琳萱,张新,周苗,杨欢欢,李文倩,吴欣茹,侯艳艳,袁宇涵,张玉,舒朋华*.基于靶点和活性成分的筛选探讨连翘抗病毒作用机制(英文)[J].Journal of Chinese Pharmaceutical Sciences,2024,33(6),543-558+587-604.

1.孙娜,王谕靖,周彩红,亢欢欢,马烁,张玉,袁宇涵,张新,靳琳萱,李文倩,吴欣茹,舒朋华*.基于综合网络药理策略研究夏枯草降压作用机制(英文)[J].Journal of Chinese Pharmaceutical Sciences,2024,33(11):1068-1081.

(四)中国发明专利

11.肖付刚,王德国,张尧轩,席潇琪,谷蒙林,郑尧天,孙军涛,张永清,舒朋华,崔鹏飞,刘金鑫,刘艳群,张园园,尹百灵,倪俊娟,王绍伟. 一种以类甜蛋白基因为靶序列的食品中玉米成分的LMTIA检测方法及其应用.专利号:ZL2023114877728(2024-9-24授权)

10. 舒朋华,黄继红,魏夏兰,孙军涛,李念慈,何林烨,万佳辉,方艺颖 .一种从车前子中提取制备京尼平苷酸的方法. 专利号:ZL2021109325117(2023-03-14授权)

9.舒朋华,娄月月,徐婷,张彭湃,黄继红,魏夏兰,臧硕,张林,张玉焕 . 一种从紫荆叶提取物中制备槲皮苷及山奈酚-3-O-芸香糖苷的方法. 专利号:ZL2021111820485(2023-03-24授权)

8. 舒朋华,徐海畅,牛浩莹,张凌翔,李军萍一种选择性脱除糖类端基氯乙酰基的方法专利号:ZL2020101136860(2023-3-14授权)

7. 舒朋华,魏夏兰,张慧,李念慈,蔡舒静,臧硕. 一种便于渣液分离的中药提取用搅拌装置. 专利号:ZL202110540482X(2022-8-16授权)

6. 舒朋华,魏夏兰,葛亚冰,杨远,张家龙,刘光伟. 一种中药提取分离装置专利号:ZL2021105219547(2022-12-30授权)

5.万谦,舒朋华,曾静,赵岳琦. 一种糖基硫醇及金诺芬的合成方法. 专利号:ZL20141045912502018-9-21授权)

4.黄继红,周靖波,郭卫芸,范玲,舒朋华,侯银臣 ,刘丹.一种利用小麦加工副产物发酵制备后生元的发酵工艺. 专利号:ZL202111143216X(2023-6-30授权)

3.黄继红,侯银臣,廖爱美,周靖波,潘龙,郭卫芸,范玲,舒朋华.一种麦胚功能蛋白的分离纯化装备. 专利号:ZL20211136028602023-2-24授权)

2.黄继红,侯银臣,廖爱美,郭卫芸,潘龙,卢作焜,魏泉增,王永辉,舒朋华.一种对直链淀粉螺旋结构进行裂解的方法.专利号:ZL20211026981642022-8-23授权)

1.肖付刚,王德国,张尧轩,席潇琪,郑尧天,孙军涛,舒朋华,崔鹏飞,刘金鑫,胡博淳,刘艳群,张园园,尹百灵,王娇.一种双重LMTIA技术鉴别当归与东当归的引物组、检测方法、试剂盒及其应用. 专利号:ZL2023117106017(2024-5-28授权)