Qun Luo
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Role not yet determined Is this you? Add your title
Also affiliated: South China Agricultural University (2023); Shanghai University (2023–2025); University of Science and Technology of China (2014–2026); United Aircraft (Russia) (2014); Beijing University of Posts and Telecommunications (2022); Shanghai University of Engineering Science (2024); National University of Defense Technology (2012); Northwestern Polytechnical University (2023); Second Military Medical University (2018); Guangdong Pharmaceutical University (2020); Chinese Academy of Sciences (2003–2026); China University of Petroleum, Beijing (2022); Beijing Normal University (2023); Dongguan University of Technology (2015–2025); Naval University of Engineering (2024); Chinese PLA General Hospital (2006–2025); Southwest Medical University (2025); Suzhou University of Science and Technology (2026); Hefei University (2021); Suzhou Institute of Nano-tech and Nano-bionics (2014–2026); Craft Group (China) (2014–2025); First Affiliated Hospital of Guangzhou Medical University (2022); Ningbo No. 2 Hospital (2021–2025); Xinjiang Institute of Ecology and Geography (2024); China Railway Fifth Survey and Design Institute Group (2021); Beijing National Laboratory for Molecular Sciences (2009–2025); Chongqing Vocational Institute of Engineering (2023); Zhejiang Lab (2025); Hangzhou Academy of Agricultural Sciences (2020); Blood Center of Zhejiang Province (2020); Suzhou Research Institute (2015–2020); Institute of Optics and Electronics, Chinese Academy of Sciences (2011–2012); Hainan General Hospital (2015); Stomatology Hospital (2020); Technical Institute of Physics and Chemistry (2003–2013); Hangzhou Xixi hospital (2015); Shanghai Research Institute of Materials (2025); State Key Laboratory of Respiratory Disease (2022–2026); Institute of Chemistry (2009–2013); Ningbo No.6 Hospital (2024); University of Chinese Academy of Sciences (2008–2025); State Key Laboratory of Silicon Materials (2010–2020); Collaborative Innovation Center of Suzhou Nano Science and Technology (2015–2019); Guangzhou Institute of Respiratory Health (2022); Zhejiang University (2008–2025); Center for Excellence in Education (2020); Guangzhou Medical University (2022–2026); Silicon Labs (United States) (2010)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Qun Luo's research has focused on the development and engineering of organic solar cells, including inkjet-printed silver nanowire networks as top electrodes and solution-processed semi-transparent perovskite solar cells with spray-coated silver nanowire/ZnO composite top electrodes. Luo has investigated the use of silane-capped ZnO nanoparticles as electron transport layers in inverted organic solar cells and explored surface acid treatment of zinc oxide electron transporting layers to enhance efficiency and lifetime in PM6:Y6 inverted organic solar cells.
In addition to work in materials science and device engineering for organic photovoltaics, Luo has also been involved in clinical research. This includes contributions to the SONAR trial evaluating atrasentan for patients with type 2 diabetes and chronic kidney disease, and the NefIgArd trial assessing a targeted-release formulation of budesonide for primary immunoglobulin A nephropathy. Luo's scholarship metrics include an h-index of 43, with 276 total publications and 6,850 total citations.
Metrics
- h-index: 43
- Publications: 276
- Citations: 6,850
Selected Publications
-
Genome-wide association study and genomic prediction of bolting trait in spinach (Spinacia oleracea L.) (2026)
-
Genome-wide association study and genome prediction of tallness trait in spinach phenotyping (2025)
-
Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection (2024)
-
Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage (2024)
-
Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction (2024)
-
Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach (2024)
-
Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach (2024)
Collaboration Network
Top Collaborators
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
Showing 5 of 6 shared publications
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
Showing 5 of 6 shared publications
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
Showing 5 of 6 shared publications
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
- Genome-wide association study and genome prediction of tallness trait in spinach phenotyping
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Genome-wide association study and genome prediction of tallness trait in spinach phenotyping
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genomic insights into oxalate content in spinach: A genome-wide association study and genomic prediction approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
- Genome-wide association study and genome prediction of tallness trait in spinach phenotyping
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genomic insights of leafminer resistance in spinach through GWAS approach and genomic prediction
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Identification of Salt Tolerance and Stress Response in US Department of Agriculture Tomato Germplasm at the Seedling Stage
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Genome-wide association study and genome prediction of tallness trait in spinach phenotyping
- Genetic Diversity and Population Structure of Tomato (Solanum lycopersicum) from the USDA-GRIN Germplasm Collection
- Genome-wide association study and genome prediction of tallness trait in spinach phenotyping
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
- Genetic Dissection of Diverse Seed Coat Patterns in Cowpea through a Comprehensive GWAS Approach
Similar Researchers
Based on overlapping research topics