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微波吸收材料领域发表的文章及其所解决的关键问题

已有 536 次阅读 2025-2-22 00:09 |个人分类:微波吸收|系统分类:科研笔记

1 我们在微波吸收材料领域发表的论文汇总

The number of papers established for the new wave mechanics theory of microwave absorption of materials and their devices shows that the new theory is serious enough and should be taken seriously by papers on the relevant subject by any journal.

  1. Yue Liu, Ying Liu, Michael G. B. Drew Review Recognizing problems in publications concerned with microwave absorption film and providing corrections A focused review,  Industrial & Engineering Chemistry Research, 2025 https://doi.org/10.1021/acs.iecr.4c04544 ; Recognizing Problems in Publications Concerned with Microwave Absorption Film and Providing Corrections: A Focused ReviewQeios, preprin,  2024-07-01, Supplementary data,   Yue Liu, Ying Liu, Drew MGB,  [Commentary] Comments on: “A perspective on impedance matching and resonance absorption mechanism for electromagnetic wave absorbing” by Hou et al. [Carbon 222 (2024) 118935]Qeios2024Supplementary Yue Liu, Ying Liu, Drew MGB, Corrections of common errors in current theories of microwave absorption caused by confusing film and materialQeios2024/02/10, preprint, https://doi.org/10.32388/QQ1MFF;  Corrections of Common Errors Associated with the Confusion between Film and Material in Current Theories of Microwave Absorption. Available at SSRN: https://ssrn.com/abstract=4797207 or http://dx.doi.org/10.2139/ssrn.4797207 

  2.  Yue Liu, Ying Liu, Michael G. B. Drew, Review: 膜微波吸收研究在波动力学理论方向的新进展分子科学学报(英文版, Journal of Molecular Science), 2024, 40(198-04), 300 -305Review of Wave Mechanics Theory for Microwave Absorption by FilmQeios, Preprint, 2024-07-04, Supplementary data

  3.  Yue Liu,Ying Liu,Michael G. B Drew. ReviewWave mechanics of microwave absorption in films: a short reviewOptics and Laser Technology2024, 178,  111211  (The wave mechanics for microwave absorption film-Part 1: A short review, Preprint, Research Square, 15 Aug, 2023, scite)

  4. Yue Liu,Ying Liu,Michael G. B Drew,Wave Mechanics of Microwave Absorption in Films - Distinguishing Film from MaterialJournal of Magnetism and Magnetic Materials2024, 593, 171850 ;     ( The wave mechanics for microwave absorption film – Part 2: The difference between film and material,Preprint, Research Square, 15 Aug, 2023, Supplementarial file)

  5. Yue Liu,Ying Liu,Michael G. B Drew,Wave Mechanics of Microwave Absorption in Films: Multilayered FilmsJournal of Electronic Materials2024, doi: 10.1007/s11664-024-11370-9; The wave mechanics for microwave absorption film-Part 3: Film with multilayers, Preprint, Research Square, 13 Aug, 2023,Supplementarial filescite_

  6.   Yue Liu, Michael G. B Drew,Ying Liu, A Theoretical Exploration of Impedance Matching Coefficients for Interfaces and FilmsApplied Physics A2024, 130, 212

  7. Ying Liu, Michael. G.B. Drew, Yue LiuChapter 4: Fundamental Theory of Microwave Absorption for Films of Porous Nanocomposites: Role of Interfaces in Composite-Fillers, in Porous Nanocomposites for Electromagnetic Interference Shielding, Edited by: Sabu Thomas, Claudio Paoloni, Avinash R. Pai2024Elsevier, [978-0-323-90035-5_B978-0-323-90035-5.00013-1], pp. 59 - 90, https://doi.org/10.1016/B978-0-323-90035-5.00013-1

  8. 刘颖, 刘跃膜的微波吸收机理, 分子科学学报, 2023,v.39; No.194(06) 521-527

  9. Ying Liu, Kaiqi Yang, Yue Liu, Michael G. B Drew, The Shackles of Peer Review: Unveiling the Flaws in the Ivory TowerarXiv, https://doi.org/10.48550/arXiv.2310.05966

  10. Ying Liu, Michael G. B. Drew, Yue Liu, A physics investigation on impedance matching theory in microwave absorption film—Part 1: Theory, Journal of Applied Physics2023, 134(4), 045303, DOI: 10.1063/5.0153608

  11. Ying Liu, Michael G. B. Drew, Yue Liu, A physics investigation on impedance matching theory in microwave absorption film—Part 2: Problem AnalysesJournal of Applied Physics2023, 134(4), 045304, DOI: 10.1063/5.0153612

  12. Ying Liu; Xiangbin Yin; M. G. B. Drew; Yue Liu, Microwave absorption of film explained accurately by wave cancellation theoryPhysica B: Condensed Matter2023, 666, 415108. (Microwave absorption of film explained accurately by wave cancellation theory2023-02-23 | Preprint, Research Square, DOI: 10.21203/rs.3.rs-2616469/v2Supplementary information: Available comments and our responses.)

  13. Ying Liu, Yi Ding, Yue Liu, Michael G. B. Drew. Unexpected Results in Microwave Absorption – Part 1: Different absorption mechanisms for metal-backed film and for materialSurfaces and Interfaces2023, 40, 103022

  14. Ying Liu, Yi Ding, Yue Liu, Michael G. B. Drew. Unexpected Results in Microwave Absorption – Part 2:. Angular effects and the wave cancellation theorySurfaces and Interfaces, 2023, 40, 103024

  15. Ying Liu, Xiangbin Yin, Michael G. B. Drew, Yue Liu, Reflection Loss is a Parameter for Film, not MaterialNon-Metallic Material Science2023, 5(1): 38-48.

  16. 刘颖,丁一,陈庆阳,刘跃,NiFe2-xMxO4 (M: Ce/Sm/Gd)的制备及其膜的微波吸收性能沈阳师范大学学报 ( 自然科学版 )2023, 41(2),98 - 103

  17. Ying Liu, Yue Liu, Drew M.G.B, A re-evaluation of the mechanism of microwave absorption in film – Part 1: Energy conservationMater. Chem. Phys2022, 290,126576.

  18. Ying Liu, Yue Liu, Drew M.G.B, A re-evaluation of the mechanism of microwave absorption in film – Part 2: The Real mechanismMater. Chem. Phys,. 2022, 291, 126601.

  19. Ying Liu, Yue Liu, Drew M.G.B, A re-evaluation of the mechanism of microwave absorption in film  Part 3: Inverse relationshipMater. Chem. Phys2022, 290, 126521.

  20. Liu YLiu Y, Drew MGB. A theoretical investigation of the quarter-wavelength model  part 2: verification and extensionPhysica Scripta 2022 , 97(1) 015806.

  21. Liu Y, Liu Y, Drew MGB. A theoretical investigation on the quarter-wavelength model — part 1: analysisPhysica Scripta 2021 , 96(12) 125003. ( The problems in the quarter-wavelength model and impedance matching theory in analysising microwave absorption material, 2021-08-30 | Preprint, Research Square, DOI: 10.21203/rs.3.rs-206241/v1)

  22. Liu Y, Drew MGB, Li H, Liu Y. A theoretical analysis of the relationships shown from the general experimental results of scattering parameters s11 and s21 – exemplified by the film of BaFe12-iCeiO19/polypyrene with i = 0.2, 0.4, 0.6Journal of Microwave Power and Electromagnetic Energy 2021 , 55(3) 197-218.

  23. Liu Y, Drew MGB, Li H, Liu YAn experimental and theoretical investigation into methods concerned with “reflection loss” for microwave absorbing materialsMaterials Chemistry and Physics 2020 , 243 122624.

  24. Liu Y, Lin Y, Zhao K, Drew MGB, Liu YMicrowave absorption properties of Ag/NiFe2-xCexO4 characterized by an alternative procedure rather than the main stream method using “reflection loss”Materials Chemistry and Physics 2020 , 243 122615

  25. 赵坤 , 林雨冉 , 刘颖 . 微波吸收复合材料 Ag/NiFe2-xCexO4 的制备与表征功能材料 2020 , 51(03) 03171 - 03175.

  26. Liu Y, Drew MGB, Liu Y. Characterization microwave absorption from active carbon/BaSmxFe12−xO19/polypyrrole composites analyzed with a more rigorous method. Journal of Materials Science: Materials in Electronics 2019, 30(2) 1936-1956.

  27. Yang K, Liu Y, Drew MGB, Liu Y. Preparation and characterization of BaSmxFe12 − xO19/polypyrrole composites. Journal of Materials Science: Materials in Electronics 2018 , 29(15) 13148-13160Electronic supplementary material.

  28. Liu Y, Zhao K, Drew MGB, Liu Y. A theoretical and practical clarification on the calculation of reflection loss for microwave absorbing materialsAIP Advances 2018 , 8(1) 015223.

  29. Liu Y, Yu H, Drew MGB, Liu Y. A systemized parameter set applicable to microwave absorption for ferrite based materialsJournal of Materials Science: Materials in Electronics 2018, 29(2) 1562-1575,Supplementary material.

  30. Liu Y, Tai R, Drew MGB, Liu Y. Several Theoretical Perspectives of Ferrite-Based Materials—Part 1: Transmission Line Theory and Microwave AbsorptionJournal of Superconductivity and Novel Magnetism 2017 , 30(9) 2489-2504.

  31. Liu Y, Jin J, B. Drew MG, Liu Y. Several Theoretical Perspectives of Ferrite-Based Materials—Part 2: Close Packing Model for Crystal StructureJournal of Superconductivity and Novel Magnetism 2017 , 30(10) 2777-2789.

  32. Liu Y, Liu Y, Yin H, Drew MGB. Several Theoretical Perspectives of Ferrite-Based Materials-Part 3: Crystal Structure and SynthesisJournal of Superconductivity and Novel Magnetism 2017 , 30(11) 3019-3025.

  33. Liu Y, Tai R, Drew MGB, Liu Y. Preparation and characterizations of active carbon/barium ferrite/polypyrrole compositesJournal of Materials Science: Materials in Electronics 2017 , 28(9) 6448-6455.

  34. Jin J, Liu Y, Drew MGB, Liu Y. Preparation and characterizations of Ba1 − xPbxFe12O19/polypyrrole composites. Journal of Materials Science: Materials in Electronics 2017 , 28(15) 11325-11331.

  35. Liu Y, Li X, Drew MGB, Liu Y. Increasing microwave absorption efficiency in ferrite based materials by doping with lead and forming compositesMaterials Chemistry and Physics 2015 , 162 677-685.

  36. 刘颖 , 台睿 , 刘跃 . 晶体场与磁学性质 . 化学教育 (Chinese Journal of Chemical Education), 2015 , 36(6) 1-10.

  37. Liu Y, Drew MGB, Liu Y, Liu Y, Cao FL. A comparative study of Fe3O4/polyaniline composites with octahedral and microspherical inorganic kernelsJournal of Materials Science 2014 , 49(10) 3694-3704.

  38. Liu Y, Drew MGB, Liu Y. Optimizing the methods of synthesis for barium hexagonal ferrite—An experimental and theoretical studyMaterials Chemistry and Physics 2012 , 134(1) 266-272.

  39. Wang J, Wu C, Xia T, Liu Y, Feng J, Zhang M. Preparation, characterizations and magnetic properties of doped barium hexaferrites BaFe12-2x Mn x Sn x O19 (x = 0.0–1.0)Journal of Wuhan University of Technology-Mater Sci Ed 2012 , 27(3) 507-511.

  40. Liu Y, Zhang HB, Duan JD, Liu Y, Gao Y, Wang LL , et al. Magnetic Properties of Mn/Co/Sn Substituted Barium Hexaferrites Synthesized by an Improved Co-Precipitation MethodAdvanced Materials Research 2011 , 239-242 3052-3055.

  41. Liu Y, Yin HS, Liu Y, Sun K, Li Y, Wang LL , et al. Improved Synthesis Methods for Barium HexaferriteAdvanced Materials Research 2011 , 239-242 3039-3042.

  42. Liu Y, Li Y, Liu Y, Yin HS, Wang LL, Sun K , et al. Structure Information of Barium Hexaferrite and Strategies for its SynthesesApplied Mechanics and Materials 2011 , 69 6-11.

  43. Liu Y, Drew MGB, Liu Y. Preparation and magnetic properties of barium ferrites substituted with manganese, cobalt, and tin. Journal of Magnetism and Magnetic Materials 2011 , 323(7) 945-953.

  44. Liu Y, Drew MGB, Wang J, Zhang M, Liu Y. Efficiency and purity control in the preparation of pure and/or aluminum-doped barium ferrites by hydrothermal methods using ferrous ions as reactantsJournal of Magnetism and Magnetic Materials 2010 , 322(3) 366-374.

  45. Liu Y, Drew MGB, Liu Y, Wang J, Zhang M. Preparation and magnetic properties of La–Mn and La–Co doped barium hexaferrites prepared via an improved co-precipitation/molten salt methodJournal of Magnetism and Magnetic Materials 2010 , 322(21) 3342-3345.

  46. Liu Y, Drew MGB, Liu Y, Wang J, Zhang M. Preparation, characterization and magnetic properties of the doped barium hexaferrites BaFe12 − 2xCox/2Znx/2SnxO19, x=0.0 – 2.0. Journal of Magnetism and Magnetic Materials 2010 , 322(7) 814-818.

2 这些工作所解决的关键问题

 The conclusions cannot be correct when they are obtained from expreimental researches based on wrong theories.

被大量实验文章实证的现行微波吸收理论错的如此彻底,其逻辑错误无法修复

用实例说明:正确的理论才是检验实验结论的唯一标准

A) Why the current theories have confused the film with the material

为什么现行理论混淆了膜和材料的不同

Yue LiuYing LiuMichael G. B DrewWave Mechanics of Microwave Absorption in Films - Distinguishing Film from MaterialJournal of Magnetism and Magnetic Materials2024 593, 171850 https://doi.org/10.1016/j.jmmm.2024.171850

Ying Liu, Xiangbin Yin, Michael G. B. Drew, Yue Liu, Reflection Loss is a Parameter for Film, not MaterialNon-Metallic Material Science2023, 5(1): 38-48.

Liu Y, Zhao K, Drew MGB, Liu Y. A theoretical and practical clarification on the calculation of reflection loss for microwave absorbing materialsAIP Advances 2018 , 8(1) 015223.

Liu Y, Lin Y, Zhao K, Drew MGB, Liu YMicrowave absorption properties of Ag/NiFe2-xCexO4 characterized by an alternative procedure rather than the main stream method using “reflection loss”Materials Chemistry and Physics 2020 , 243 122615

B) Why the current absorption mechanism for microwave absorption is wrong

为什么现行微波吸收机理是错的 

Ying Liu, Yue Liu, Drew M.G.B, A re-evaluation of the mechanism of microwave absorption in film – Part 2: The Real mechanismMater. Chem. Phys. 2022, 291, 126601.

https://doi.org/10.1016/j.matchemphys.2022.126601  

Yue LiuYing LiuMichael G. B Drew. ReviewWave mechanics of microwave absorption in films: a short reviewOptics and Laser Technology2024, 178,  111211 https://doi.org/10.1016/j.optlastec.2024.111211

Yue Liu, Ying Liu, Michael G. B. Drew, Review: 膜微波吸收研究在波动力学理论方向的新进展分子科学学报(英文版, Journal of Molecular Science), 2024, 40(198-04), 300 -305.

C) Why the impedance matching theory is wrong

为什么微波吸收领域的阻抗匹配理论是错的

Ying Liu, Michael G. B. Drew, Yue Liu, A physics investigation on impedance matching theory in microwave absorption film—Part 2: Problem AnalysesJournal of Applied Physics2023, 134(4), 045304 https://doi.org/10.1063/5.0153612

Ying Liu, Yi Ding, Yue Liu, Michael G. B. Drew. Unexpected Results in Microwave Absorption – Part 1: Different absorption mechanisms for metal-backed film and for materialSurfaces and Interfaces2023, 40, 103022

https://doi.org/10.1063/5.0153608

Yue Liu, Michael G. B Drew,Ying Liu, A Theoretical Exploration of Impedance Matching Coefficients for Interfaces and FilmsApplied Physics A2024, 130, 212

D) Why the quarter wavelength theory is wrong (different perspectives)

为什么四分之一波长理论是错的

Liu YLiu Y, Drew MGB. A theoretical investigation of the quarter-wavelength model  part 2: verification and extensionPhysica Scripta 2022 , 97(1) 015806 https://doi.org/10.1088/1402-4896/ac1eb1

Liu Y, Liu Y, Drew MGB. A theoretical investigation on the quarter-wavelength model — part 1: analysisPhysica Scripta 2021 , 96(12) 125003 https://doi.org/10.1088/1402-4896/ac1eb0

Ying Liu, Yue Liu, Drew M.G.B, A re-evaluation of the mechanism of microwave absorption in film  Part 3: Inverse relationshipMater. Chem. Phys2022, 290, 126521.

https://doi.org/10.1016/j.matchemphys.2022.126521

Yue LiuYing LiuMichael G. B DrewWave Mechanics of Microwave Absorption in Films: Multilayered FilmsJournal of Electronic Materials2024, 53, 8154–8170 doi: 10.1007/s11664-024-11370-9

http://dx.doi.org/10.1007/s11664-024-11370-9

Yue Liu, Michael G. B Drew,Ying Liu, A Theoretical Exploration of Impedance Matching Coefficients for Interfaces and FilmsApplied Physics A2024, 130, 212, please see section 2.3 http://dx.doi.org/10.1007/s00339-024-07364-3

Ying Liu, Michael G. B. Drew, Yue Liu, A physics investigation on impedance matching theory in microwave absorption film—Part 1: Theory, Journal of Applied Physics2023, 134(4), 045303, Please see section III. https://doi.org/10.1063/5.0153608

Ying Liu, Michael G. B. Drew, Yue Liu, A physics investigation on impedance matching theory in microwave absorption film—Part 2: Problem AnalysesJournal of Applied Physics2023, 134(4), 045304, Please see section III. https://doi.org/10.1063/5.0153612

 E)微波吸收文献中的普遍低级错误

Yue Liu, Ying Liu, Michael G. B. Drew Review Recognizing problems in publications concerned with microwave absorption film and providing corrections A focused review,  Industrial & Engineering Chemistry Research, 2025 https://doi.org/10.1021/acs.iecr.4c04544 

现在的学者是在做学问还是在玩学术游戏

F)所需要的数学基础

Liu Y, Drew MGB, Li H, Liu Y. A theoretical analysis of the relationships shown from the general experimental results of scattering parameters s11 and s21 – exemplified by the film of BaFe12-iCeiO19/polypyrene with i = 0.2, 0.4, 0.6Journal of Microwave Power and Electromagnetic Energy 2021 , 55(3) 197-218. 见附录

Ying Liu, Michael. G.B. Drew, Yue LiuChapter 4: Fundamental Theory of Microwave Absorption for Films of Porous Nanocomposites: Role of Interfaces in Composite-Fillers, in Porous Nanocomposites for Electromagnetic Interference Shielding, Edited by: Sabu Thomas, Claudio Paoloni, Avinash R. Pai2024Elsevier, [978-0-323-90035-5_B978-0-323-90035-5.00013-1], pp. 59 - 90, https://doi.org/10.1016/B978-0-323-90035-5.00013-1

G) 所需要的电磁学传输线理论的基础

Liu Y, Tai R, Drew MGB, Liu Y. Several Theoretical Perspectives of Ferrite-Based Materials—Part 1: Transmission Line Theory and Microwave AbsorptionJournal of Superconductivity and Novel Magnetism 2017 , 30(9) 2489-2504.

Liu Y, Drew MGB, Li H, Liu YAn experimental and theoretical investigation into methods concerned with “reflection loss” for microwave absorbing materialsMaterials Chemistry and Physics 2020 , 243 122624.

Liu Y, Zhao K, Drew MGB, Liu Y. A theoretical and practical clarification on the calculation of reflection loss for microwave absorbing materialsAIP Advances 2018 , 8(1) 015223.

H)根据晶体结构理论改进微波吸收材料的合成路线

Liu Y, Drew MGB, Wang J, Zhang M, Liu Y. Efficiency and purity control in the preparation of pure and/or aluminum-doped barium ferrites by hydrothermal methods using ferrous ions as reactantsJournal of Magnetism and Magnetic Materials 2010 , 322(3) 366-374.

Liu Y, Drew MGB, Liu Y, Wang J, Zhang M. Preparation and magnetic properties of La–Mn and La–Co doped barium hexaferrites prepared via an improved co-precipitation/molten salt methodJournal of Magnetism and Magnetic Materials 2010 , 322(21) 3342-3345.

Liu Y, Drew MGB, Liu Y, Wang J, Zhang M. Preparation, characterization and magnetic properties of the doped barium hexaferrites BaFe12 − 2xCox/2Znx/2SnxO19, x=0.0 – 2.0. Journal of Magnetism and Magnetic Materials 2010 , 322(7) 814-818.

Liu Y, Drew MGB, Liu Y. Preparation and magnetic properties of barium ferrites substituted with manganese, cobalt, and tin. Journal of Magnetism and Magnetic Materials 2011 , 323(7) 945-953.

Liu Y, Drew MGB, Liu Y. Optimizing the methods of synthesis for barium hexagonal ferrite—An experimental and theoretical studyMaterials Chemistry and Physics 2012 , 134(1) 266-272.

Liu Y, Jin J, B. Drew MG, Liu Y. Several Theoretical Perspectives of Ferrite-Based Materials—Part 2: Close Packing Model for Crystal StructureJournal of Superconductivity and Novel Magnetism 2017 , 30(10) 2777-2789.

Liu Y, Liu Y, Yin H, Drew MGB. Several Theoretical Perspectives of Ferrite-Based Materials-Part 3: Crystal Structure and SynthesisJournal of Superconductivity and Novel Magnetism 2017 , 30(11) 3019-3025.

Liu Y, Zhang HB, Duan JD, Liu Y, Gao Y, Wang LL , et al. Magnetic Properties of Mn/Co/Sn Substituted Barium Hexaferrites Synthesized by an Improved Co-Precipitation MethodAdvanced Materials Research 2011 , 239-242 3052-3055.

Liu Y, Yin HS, Liu Y, Sun K, Li Y, Wang LL , et al. Improved Synthesis Methods for Barium HexaferriteAdvanced Materials Research 2011 , 239-242 3039-3042.

Liu Y, Li Y, Liu Y, Yin HS, Wang LL, Sun K , et al. Structure Information of Barium Hexaferrite and Strategies for its SynthesesApplied Mechanics and Materials 2011 , 69 6-11.

3 项目基金

这些工作从来没有获得过国家自然科学基金资助。

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破五唯后,唯项目已经成为不可阻挡的趋势 

也谈:“唯项目”成为了不可阻挡的趋势

“唯”啦,奇迹就一定会出现

“唯项目”危害更大

申请书天花乱坠,成果一地鸡毛, 科学研究不是深度挖掘根本不存在的关系

很多时候研究热点就是大家都在为根本不存在的事情提供“存在”的实验证据

对Nature Communications的一篇微波吸收文章结论的可靠性的质疑

[转载]郑州大学申长雨院士、刘春太教授团队发表微波吸收材料研究论文

摘要” 的英文译文竟然是“Pumping elephant”

Funding

1. Heilongjiang Provincial Education Science Planning Office’s Special Project “Research on the Strategy for the Prevention and Control of the Epidemic in the Context of the COVID-19”: Law Popularization Education Research on the Rule of Public Health Rule of Law in Institutions and Universities under Public Health Emergencies, No. GJE1320136

2. Key topics of Heilongjiang Education and Science “13th Five-Year Plan” in 2018: Practical Research on the Innovative Talent Training Mechanism of Heilongjiang Higher Medical Colleges, No. GBB1318076.

3. Heilongjiang Economic and Social Development Key Research Project Base: Research on the Legal Culture Construction of Traditional Chinese Medicine under the Context of the Traditional Chinese Medicine Law, No.: JD2017021.

4. Heilongjiang Provincial University Basic Scientific Research Business Fees Research Project: Research on the Effective Mechanism of the Integration of Outstanding Traditional Chinese Culture into the Ideological and Political Education of Universities, No. 2018-KYYWF-0594.

5. Heilongjiang Philosophy and Social Science Research Project: Research on Intellectual Property Protection of New Fields and New Business Innovation Achievements, No.: 19FXB039.

6. Heilongjiang Philosophy and Social Science Research Project: Research on Labor Employment and Social Security for People with Mental Disabilities in Heilongjiang Province, No. 17GLB026.

7. Daqing Campus of Harbin Medical University “In-School Scientific Research Fund”: Legal Research on the Protection of Intellectual Property Rights in Traditional Chinese Medicine, No. DQXN201612.

8. Special topics for the study of the integration of outstanding traditional culture into ideological and political courses on the Daqing campus of Harbin Medical University: the integration of excellent traditional culture into ideological and political courses, the enhancement of cultural consciousness and self-confidence, number: DQCTWH201801.

9. Special Research Project on the Integration of Excellent Traditional Chinese Culture into Thought and Administration Courses on Daqing Campus of Harbin Medical University: Research on the Effective Mechanism of the Integration of Chinese Excellent Traditional Culture into College Thought and Political Science Courses, No. DQCTWH201802.

10. Sichuan Provincial Philosophy and Social Sciences Key Research Base Sichuan Medical and Health Law Research Center 2016 Project: Research on Labor Rights Protection for People with Mental Disabilities in Northeast China, No. YF16-Y02.

11 Key project of Daqing philosophy and social science planning research: research on the construction of healthy Daqing, number: DSGB2019035.

纠正微波吸收文献中错误的综述(文章摘译)

https://academic.oup.com/nsr/article/12/2/nwae420/7907264

相当多的学术权威不是因为学术而权威,他们靠造假发表垃圾文章污染学术而成为学术权威

现代科学制度越来越僵化、越来越阻碍科学的进步



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