Yangyang He

7.8k total citations · 2 hit papers
133 papers, 6.7k citations indexed

About

Yangyang He is a scholar working on Materials Chemistry, Electrical and Electronic Engineering and Pulmonary and Respiratory Medicine. According to data from OpenAlex, Yangyang He has authored 133 papers receiving a total of 6.7k indexed citations (citations by other indexed papers that have themselves been cited), including 48 papers in Materials Chemistry, 31 papers in Electrical and Electronic Engineering and 23 papers in Pulmonary and Respiratory Medicine. Recurrent topics in Yangyang He's work include Luminescence Properties of Advanced Materials (28 papers), Pulmonary Hypertension Research and Treatments (16 papers) and Perovskite Materials and Applications (12 papers). Yangyang He is often cited by papers focused on Luminescence Properties of Advanced Materials (28 papers), Pulmonary Hypertension Research and Treatments (16 papers) and Perovskite Materials and Applications (12 papers). Yangyang He collaborates with scholars based in China, Germany and United States. Yangyang He's co-authors include Kelong Ai, Lehui Lu, Yanlan Liu, Jianhua Liu, Bin Dong, Baosheng Cao, Zhiqing Feng, Qinghai Yuan, Zhipeng Li and Zhuang Liu and has published in prestigious journals such as Advanced Materials, Journal of Biological Chemistry and Angewandte Chemie International Edition.

In The Last Decade

Yangyang He

124 papers receiving 6.6k citations

Hit Papers

Dopamine‐Melanin Colloida... 2012 2026 2016 2021 2012 2012 500 1000 1.5k

Author Peers

Peers are selected by citation overlap in the author's most active subfields. citations · hero ref

Author Last Decade Papers Cites
Yangyang He 3.0k 2.6k 1.4k 1.1k 842 133 6.7k
Lingjie Meng 3.3k 1.1× 2.5k 1.0× 1.2k 0.9× 1.1k 1.0× 1.1k 1.3× 167 5.7k
Valentina Cauda 3.5k 1.2× 3.4k 1.3× 1.3k 0.9× 1.2k 1.0× 1.6k 1.9× 167 7.9k
Rui Tang 2.8k 0.9× 2.4k 0.9× 1.8k 1.3× 1.3k 1.2× 573 0.7× 265 7.8k
Wei Shao 3.0k 1.0× 1.7k 0.7× 1.3k 0.9× 715 0.6× 785 0.9× 146 5.6k
Hao Huang 5.1k 1.7× 3.7k 1.4× 2.2k 1.6× 1.6k 1.5× 795 0.9× 170 9.5k
Ming Su 1.6k 0.6× 1.8k 0.7× 836 0.6× 939 0.8× 553 0.7× 170 5.4k
Yuqing Miao 2.5k 0.8× 2.1k 0.8× 3.1k 2.3× 1.8k 1.6× 696 0.8× 292 7.6k
Ying Zhu 2.8k 0.9× 2.4k 0.9× 1.4k 1.0× 2.4k 2.1× 730 0.9× 210 7.6k
Shinji Takeoka 2.2k 0.7× 2.7k 1.0× 1.4k 1.0× 2.5k 2.2× 1.4k 1.7× 329 8.8k

Countries citing papers authored by Yangyang He

Since Specialization
Citations

This map shows the geographic impact of Yangyang He's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Yangyang He with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Yangyang He more than expected).

Fields of papers citing papers by Yangyang He

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Yangyang He. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Yangyang He. The network helps show where Yangyang He may publish in the future.

Co-authorship network of co-authors of Yangyang He

This figure shows the co-authorship network connecting the top 25 collaborators of Yangyang He. A scholar is included among the top collaborators of Yangyang He based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Yangyang He. Yangyang He is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Pan, Xuexue, et al.. (2025). Convergence of Computational Materials Science and AI for Next-Generation Energy Storage Materials. Journal of Electronic Materials. 55(1). 45–114.
3.
Yan, Wenqiang, Yangyang He, Manwen Zhang, et al.. (2024). 3D Printed Elastomer‐Hydrogel Composite Meniscal Scaffolds with Biomimetic Gradient Structure and Robust Interface for Preventing Osteoarthritis and Repairing Meniscal Injuries. Advanced Functional Materials. 34(30). 18 indexed citations
4.
Zeng, Xianwu, et al.. (2024). Stability Analysis of Multiple-Source DC Network in Fuel Cell-Powered Electric Aircraft. IEEE Journal of Emerging and Selected Topics in Power Electronics. 13(4). 4551–4562.
5.
Kou, Jie‐Jian, Hongda Zhang, Xinmei Xie, et al.. (2024). Metabolic alterations in human pulmonary artery smooth muscle cells treated with PDGFBB. SHILAP Revista de lepidopterología. 8(7). 1268–1276. 1 indexed citations
6.
Liu, Pengfei, Yunfeng Zhou, Jun-Zhuo Shi, et al.. (2023). Myricetin improves pathological changes in 3×Tg-AD mice by regulating the mitochondria-NLRP3 inflammasome-microglia channel by targeting P38 MAPK signaling pathway. Phytomedicine. 115. 154801–154801. 31 indexed citations
7.
Zhang, Zhibo, Yangyang He, Yun Wu, et al.. (2023). Ignition enhancement of liquid kerosene by a novel high-energy spark igniter in scramjet combustor at Mach 4 flight condition. Aerospace Science and Technology. 139. 108397–108397. 15 indexed citations
8.
Cao, Baosheng, et al.. (2023). Multi-strategy ratiometric luminescent thermometry based on Dy doped CaWO4 phosphors independent of excitation wavelength. Materials Research Bulletin. 172. 112667–112667. 7 indexed citations
9.
Liu, Dedi, Da‐Peng Dong, Zhenyi Zhang, et al.. (2023). High pressure photoluminescence and Raman investigations of Rhodamine B absorbed on MIL 53(Fe). Optical Materials. 146. 114537–114537. 5 indexed citations
10.
Wu, Xinhua, Yangyang He, Zhangrong Chen, et al.. (2023). Single-cell analysis of peripheral blood from high-altitude pulmonary hypertension patients identifies a distinct monocyte phenotype. Nature Communications. 14(1). 1820–1820. 17 indexed citations
11.
Jiang, Chenyu, Liwei Wu, Bei Feng, et al.. (2023). Identification of ACKR4 as an immune checkpoint in pulmonary arterial hypertension. Frontiers in Immunology. 14. 1153573–1153573. 3 indexed citations
13.
Men, F. K., Baosheng Cao, Cong Yan, et al.. (2021). Thermal-enhanced near-infrared upconversion luminescence of Er3+ for high-sensitive optical temperature sensing. Journal of Luminescence. 236. 118153–118153. 28 indexed citations
14.
Wang, Xinmei, Xinmei Wang, Qi Ren, et al.. (2020). MicroRNA‐221 promotes breast cancer resistance to adriamycin via modulation of PTEN/Akt/mTOR signaling. Cancer Medicine. 9(4). 1544–1552. 36 indexed citations
15.
Lu, Bing, Yangyang He, Jincan He, et al.. (2019). Epigenetic Profiling Identifies LIF as a Super-enhancer-Controlled Regulator of Stem Cell–like Properties in Osteosarcoma. Molecular Cancer Research. 18(1). 57–67. 35 indexed citations
16.
Liu, Dedi, et al.. (2016). One-step synthesis of C60 nano-assemblies at different temperatures. Materials & Design. 93. 343–346. 3 indexed citations
17.
Yu, Naisen, et al.. (2015). The effect of trichlorobenzene solvent geometry on the morphologies of C 60 nano/microcrystals produced from solution. Materials Research Bulletin. 73. 65–69. 6 indexed citations
18.
Chen, Lanying, Hui Liu, Yingying Luo, et al.. (2013). Study on integrity and timing characteristics of Shaoyao and Gancao decoction on anti-inflammatory effects by BP neural network. Acta Pharmacologica Sinica. 34(S1). S43–S48. 2 indexed citations
19.
Liu, Yanlan, et al.. (2012). Dopamine‐Melanin Colloidal Nanospheres: An Efficient Near‐Infrared Photothermal Therapeutic Agent for In Vivo Cancer Therapy. Advanced Materials. 25(9). 1353–1359. 1827 indexed citations breakdown →
20.
Du, Meirong, Wen‐Jie Zhou, Feifei Yan, et al.. (2007). Cyclosporine A induces titin expression via MAPK/ERK signalling and improves proliferative and invasive potential of human trophoblast cells. Human Reproduction. 22(9). 2528–2537. 52 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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