Xiaohu Yang

3.6k total citations · 1 hit paper
65 papers, 2.9k citations indexed

About

Xiaohu Yang is a scholar working on Biomedical Engineering, Materials Chemistry and Mechanical Engineering. According to data from OpenAlex, Xiaohu Yang has authored 65 papers receiving a total of 2.9k indexed citations (citations by other indexed papers that have themselves been cited), including 25 papers in Biomedical Engineering, 23 papers in Materials Chemistry and 22 papers in Mechanical Engineering. Recurrent topics in Xiaohu Yang's work include Nanoplatforms for cancer theranostics (15 papers), Phase Change Materials Research (11 papers) and Heat Transfer and Optimization (9 papers). Xiaohu Yang is often cited by papers focused on Nanoplatforms for cancer theranostics (15 papers), Phase Change Materials Research (11 papers) and Heat Transfer and Optimization (9 papers). Xiaohu Yang collaborates with scholars based in China, United States and France. Xiaohu Yang's co-authors include Jing Liu, Sicong Tan, Qiangbin Wang, Chunyan Li, Yejun Zhang, Hongchao Yang, Yujie Ding, Zhi‐Zhu He, Guangcun Chen and Sisi Ling and has published in prestigious journals such as Advanced Materials, Angewandte Chemie International Edition and Nano Letters.

In The Last Decade

Xiaohu Yang

59 papers receiving 2.9k citations

Hit Papers

An improved hybrid thermal management system for prismati... 2023 2026 2024 2025 2023 40 80 120

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Xiaohu Yang China 31 1.3k 1.1k 964 712 415 65 2.9k
Peng Zhao China 26 1.2k 0.9× 948 0.9× 357 0.4× 624 0.9× 234 0.6× 72 2.7k
Heng Deng United States 26 965 0.7× 675 0.6× 666 0.7× 548 0.8× 167 0.4× 81 2.2k
Bryan Kaehr United States 30 1.5k 1.1× 1.5k 1.4× 393 0.4× 612 0.9× 187 0.5× 59 3.3k
Meredith N. Silberstein United States 27 975 0.7× 584 0.5× 465 0.5× 828 1.2× 222 0.5× 72 2.8k
Susheng Tan United States 30 662 0.5× 1.1k 1.0× 427 0.4× 1000 1.4× 223 0.5× 123 3.1k
Anne Leriche France 30 1.2k 0.9× 948 0.9× 595 0.6× 499 0.7× 249 0.6× 126 2.6k
Yiliang Lin United States 29 2.6k 2.0× 1.0k 0.9× 792 0.8× 1.4k 1.9× 118 0.3× 67 4.2k
Wenfeng Liang China 31 1.6k 1.2× 1.2k 1.0× 428 0.4× 1.9k 2.6× 388 0.9× 125 4.1k
Eva Blasco Germany 41 2.4k 1.8× 1.5k 1.4× 814 0.8× 451 0.6× 720 1.7× 126 4.9k
J. Bauer Germany 24 1.1k 0.8× 619 0.6× 1.6k 1.6× 523 0.7× 630 1.5× 77 3.4k

Countries citing papers authored by Xiaohu Yang

Since Specialization
Citations

This map shows the geographic impact of Xiaohu Yang'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 Xiaohu Yang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Xiaohu Yang more than expected).

Fields of papers citing papers by Xiaohu Yang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Xiaohu Yang. 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 Xiaohu Yang. The network helps show where Xiaohu Yang may publish in the future.

Co-authorship network of co-authors of Xiaohu Yang

This figure shows the co-authorship network connecting the top 25 collaborators of Xiaohu Yang. A scholar is included among the top collaborators of Xiaohu Yang 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 Xiaohu Yang. Xiaohu Yang 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.
Wang, Han, et al.. (2025). Experimental study on transient running characteristics of passive containment cooling system under heave conditions. International Journal of Thermal Sciences. 215. 109938–109938.
2.
Ma, Liqiang, et al.. (2025). Characteristics of infrared radiation precursors of water inrush from coal and rock fractures under hydrodynamic coupling. Infrared Physics & Technology. 151. 106143–106143.
3.
Ling, Sisi, Tuanwei Li, Xiaohu Yang, et al.. (2025). Tumor Microenvironment-Responsive Nano-Immunomodulators for Enhancing Chimeric Antigen Receptor-T Cell Therapy in Lung Cancer. ACS Nano. 19(8). 8212–8226. 2 indexed citations
5.
Gao, Huan, et al.. (2024). Deep learning-assisted design for battery liquid cooling plate with bionic leaf structure considering non-uniform heat generation. Applied Energy. 373. 123898–123898. 20 indexed citations
6.
7.
Yang, Xiaohu, Chunyan Li, Hongchao Yang, et al.. (2024). Programmed Remodeling of the Tumor Milieu to Enhance NK Cell Immunotherapy Combined with Chemotherapy for Pancreatic Cancer. Nano Letters. 24(11). 3421–3431. 10 indexed citations
8.
Li, Tuanwei, Xiaohu Yang, Xiang Zhong, et al.. (2024). Cancer cell membrane-coated siRNA-Decorated Au/MnO2 nanosensitizers for synergistically enhanced radio-immunotherapy of breast cancer. Materials Today Bio. 29. 101275–101275. 10 indexed citations
9.
Xu, Xiaofeng, et al.. (2024). Rapid reversion of martensite in low-alloy steel under electropulsing treatment: Exploring feasibility of reversible transformation. Materials Characterization. 217. 114436–114436. 1 indexed citations
10.
Li, Tuanwei, Feng Wu, Hongchao Yang, et al.. (2023). Precise Synergistic Photothermal Therapy Guided by Accurate Temperature‐Dependent NIR‐II Fluorescence Imaging. Advanced Functional Materials. 34(14). 24 indexed citations
11.
Huang, Xinyu, Shouguang Yao, Xiaohu Yang, et al.. (2022). Polarization analysis and optimization of negative electrode nickel foam structure of zinc-nickel single-flow battery. Journal of Energy Storage. 55. 105624–105624. 6 indexed citations
12.
Li, Tuanwei, Kaili Cao, Xiaohu Yang, et al.. (2022). An oral ratiometric NIR-II fluorescent probe for reliable monitoring of gastrointestinal diseases in vivo. Biomaterials. 293. 121956–121956. 30 indexed citations
13.
Chen, Yu, et al.. (2020). Review on Reserve Configuration for Large-Scale Renewable Energy Integration. 2020 IEEE Sustainable Power and Energy Conference (iSPEC). 585–591.
14.
Gao, Jianye, Xudong Zhang, Junheng Fu, Xiaohu Yang, & Jing Liu. (2020). Numerical investigation on integrated thermal management via liquid convection and phase change in packed bed of spherical low melting point metal macrocapsules. International Journal of Heat and Mass Transfer. 150. 119366–119366. 20 indexed citations
15.
Li, Tuanwei, Chunyan Li, Zheng Ruan, et al.. (2019). Polypeptide-Conjugated Second Near-Infrared Organic Fluorophore for Image-Guided Photothermal Therapy. ACS Nano. 13(3). 3691–3702. 174 indexed citations
16.
Yao, Yuchen, Jianye Gao, Xiaohu Yang, et al.. (2019). Thermal evaluation of the injectable liquid metal bone cement in orthopedic treatment. Science China Technological Sciences. 63(3). 446–458. 11 indexed citations
17.
Chen, Sen, et al.. (2019). Al-assisted high frequency self-powered oscillations of liquid metal droplets. Soft Matter. 15(44). 8971–8975. 22 indexed citations
18.
Yang, Xiaohu, Sicong Tan, Zhi‐Zhu He, & Jing Liu. (2018). Finned heat pipe assisted low melting point metal PCM heat sink against extremely high power thermal shock. Energy Conversion and Management. 160. 467–476. 106 indexed citations
19.
Song, Siyuan, Xiaohu Yang, Fengxian Xin, & Tian Jian Lu. (2018). Publisher’s Note: “Modeling of surface roughness effects on Stokes flow in circular pipes” [Phys. Fluids 30, 023604 (2018)]. Physics of Fluids. 30(4). 3 indexed citations
20.
Wang, Xiaodong, Bo Chen, Haifeng Wang, et al.. (2015). Design and fabrication of far ultraviolet filters based on π-multilayer technology in high-k materials. Scientific Reports. 5(1). 8503–8503. 5 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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