Ling Hua Hu
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Also affiliated: Yuncheng University (2000); Xi'an University of Science and Technology (2024); Jiangsu Normal University (2009–2010); Central South University (2006–2008); Chongqing Technology and Business University (2016); Jiamusi University (2008); China Pharmaceutical University (2012); Hunan University (2007–2022); Beijing Technology and Business University (2012); Fudan University (2022–2023); Wuhan University (1999–2022); Sichuan University of Arts and Science (2020); Hospital Universiti Sains Malaysia (2025); Nanjing University of Industry Technology (2003–2013); National Institute of Education Sciences (2008); University of Arts (2020); National Center for Drug Screening (2012); Department of Commerce (2025); Chinese Academy of Agricultural Sciences (2009); Tianjin Hospital (2009); Leibniz-Institute for Food Systems Biology at the Technical University of Munich (2014); Ningbo Entry-Exit Inspection And Quarantine Bureau (2019–2023); Sweet Potato Research Institute (2009); Second Xiangya Hospital of Central South University (2006–2008); Huashan Hospital (2013); Hefei First People's Hospital (2025); Changchun University of Technology (2023–2024); State Key Laboratory of Chemobiosensing and Chemometrics (2022); State Key Laboratory of Medical Neurobiology (2022); Wuhan University of Science and Technology (2010–2024); Frontiers Center for Brain Science of the Ministry of Education (2022); Xiangtan University (2017–2024); Shaanxi University of Science and Technology (2024); Hunan Agricultural University (2007); Technical University of Munich (2012–2014); Lead City University (2009); Zhejiang Gongshang University (2012–2018); Hubei University (2004–2022); Shanxi Normal University (2007)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ling Hua Hu's research has explored various aspects of materials science, including the development of cathode materials for sodium-ion batteries and the analysis of fuel cell technologies. Publications indicate work on highly crystallized Na₂CoFe(CN)₆ with suppressed lattice defects as a superior cathode material for sodium-ion batteries, and a feasibility analysis for alkaline membrane direct methanol fuel cells.
Additional research interests include the investigation of thermal decomposition pathways of amino acids like glycine, glycylglycine, phenylalanine, and tyrosine using TG–FTIR. Hu has also studied the sulfation of Chinese lacquer polysaccharides in different solvents and the properties of calix[4]arenes as neutral receptors for dicarboxylate anions. Furthermore, recent work has focused on the role of the mitochondrial pathway in triptolide-induced cytotoxicity in human normal liver cells and the development of vascular endothelial growth factor-recruiting nanofiber bandages for skin regeneration.
Metrics
- h-index: 28
- Publications: 143
- Citations: 2,775
Selected Publications
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Book review: transforming teacher education for social justice (2025)
Collaboration Network
Top Collaborators
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- Preparation of high-performance multiphase heterostructures IT-SOFC cathode materials by Pr-induced in situ assembly
- Preparation of Pr, Co co-doped BaFeO3–δ-based nanofiber cathode materials by electrospinning
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- A high-performance composite cathode based on thermal expansion complementation for SOFC
- Characterization of B‐Site Sc‐doped La2Ni1-xScxO4+δ (x=0, 0.05, 0.10, and 0.15) perovskites as cathode materials for IT-SOFCs
- Financing of Long-Term Care Insurance Based on Data Analysis
- Energy and CO2 emissions modeling for unconventional machining industry considering processing characteristics
- Energy and CO2 emissions modeling for unconventional machining industry considering processing characteristics
- Energy and CO2 emissions modeling for unconventional machining industry considering processing characteristics
- Energy and CO2 emissions modeling for unconventional machining industry considering processing characteristics
- Energy and CO2 emissions modeling for unconventional machining industry considering processing characteristics
- Energy and CO2 emissions modeling for unconventional machining industry considering processing characteristics
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