Chia-Ying Chen

1.5k total citations
44 papers, 1.1k citations indexed

About

Chia-Ying Chen is a scholar working on Materials Chemistry, Molecular Biology and Electrical and Electronic Engineering. According to data from OpenAlex, Chia-Ying Chen has authored 44 papers receiving a total of 1.1k indexed citations (citations by other indexed papers that have themselves been cited), including 17 papers in Materials Chemistry, 16 papers in Molecular Biology and 11 papers in Electrical and Electronic Engineering. Recurrent topics in Chia-Ying Chen's work include Advanced Photocatalysis Techniques (8 papers), RNA Research and Splicing (8 papers) and Circular RNAs in diseases (7 papers). Chia-Ying Chen is often cited by papers focused on Advanced Photocatalysis Techniques (8 papers), RNA Research and Splicing (8 papers) and Circular RNAs in diseases (7 papers). Chia-Ying Chen collaborates with scholars based in Taiwan, United States and Philippines. Chia-Ying Chen's co-authors include Chad T. Jafvert, Trees‐Juen Chuang, Tai-Wei Chiang, Richard G. Zepp, Li-Yuan Hung, Chi‐Wen Lin, Chan-Shuo Wu, Yuting Hong, Jing‐Fang Huang and Te‐Lun Mai and has published in prestigious journals such as Nucleic Acids Research, Environmental Science & Technology and Analytical Chemistry.

In The Last Decade

Chia-Ying Chen

43 papers receiving 1.0k citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Chia-Ying Chen Taiwan 16 428 350 213 213 210 44 1.1k
Yirui Chen China 21 289 0.7× 290 0.8× 68 0.3× 132 0.6× 213 1.0× 60 1.2k
Yue Sun China 24 319 0.7× 578 1.7× 79 0.4× 326 1.5× 143 0.7× 67 1.6k
Haiyan Huang China 19 263 0.6× 158 0.5× 53 0.2× 230 1.1× 267 1.3× 55 1.2k
Cong Lyu China 23 392 0.9× 308 0.9× 61 0.3× 329 1.5× 753 3.6× 55 1.6k
Zeyuan Wang China 13 246 0.6× 94 0.3× 42 0.2× 72 0.3× 328 1.6× 39 823
Salome Yakubu China 13 212 0.5× 260 0.7× 35 0.2× 159 0.7× 134 0.6× 16 735
Norio Ohashi Japan 9 706 1.6× 64 0.2× 64 0.3× 334 1.6× 226 1.1× 17 1.2k
Xiaonan Wei China 20 332 0.8× 150 0.4× 53 0.2× 269 1.3× 155 0.7× 56 1.2k

Countries citing papers authored by Chia-Ying Chen

Since Specialization
Citations

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

Fields of papers citing papers by Chia-Ying Chen

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Chia-Ying Chen. 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 Chia-Ying Chen. The network helps show where Chia-Ying Chen may publish in the future.

Co-authorship network of co-authors of Chia-Ying Chen

This figure shows the co-authorship network connecting the top 25 collaborators of Chia-Ying Chen. A scholar is included among the top collaborators of Chia-Ying Chen 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 Chia-Ying Chen. Chia-Ying Chen 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.
Chen, Chia-Ying, et al.. (2024). Influence of Inorganic Anions on the Chemical Stability of Molybdenum Disulfide Nanosheets in the Aqueous Environment. Environmental Science & Technology. 58(5). 2490–2501. 8 indexed citations
2.
Ho, Wei-Min, Chia-Ying Chen, Tai-Wei Chiang, & Trees‐Juen Chuang. (2024). A longer time to relapse is associated with a larger increase in differences between paired primary and recurrent IDH wild-type glioblastomas at both the transcriptomic and genomic levels. Acta Neuropathologica Communications. 12(1). 77–77. 2 indexed citations
3.
Chen, Chia-Ying, et al.. (2023). Recovery and repurposing of waste isopropanol with CO2-switchable deep eutectic solvents. The Science of The Total Environment. 896. 165053–165053. 6 indexed citations
4.
Li, Xinyu, et al.. (2023). Repurposing of waste ammonium sulfate as S,N-doped carbon quantum dots: A sensitive and selective fluorescent probe for the determination of tetracycline. Journal of the Taiwan Institute of Chemical Engineers. 154. 105128–105128. 14 indexed citations
6.
Chuang, Trees‐Juen, Tai-Wei Chiang, & Chia-Ying Chen. (2023). Assessing the impacts of various factors on circular RNA reliability. Life Science Alliance. 6(5). e202201793–e202201793. 9 indexed citations
7.
Chiang, Tai-Wei, et al.. (2023). FL-circAS: an integrative resource and analysis for full-length sequences and alternative splicing of circular RNAs with nanopore sequencing. Nucleic Acids Research. 52(D1). D115–D123. 14 indexed citations
8.
Lai, Yu‐Heng, et al.. (2022). The role of transformation in the risks of chemically exfoliated molybdenum disulfide nanosheets to the aquatic environment. Journal of Environmental Management. 324. 116278–116278. 6 indexed citations
9.
Chen, Chia-Ying, et al.. (2022). Photocatalytic splitting of H2O-to-H2O2 by BiOI/g-C3N4/CoP S-scheme heterojunctions. New Journal of Chemistry. 47(4). 1825–1831. 11 indexed citations
10.
Liu, Shu-Hui, et al.. (2022). Enhanced sulfolane-contaminated groundwater degradation and power generation by a mini tubular microbial fuel cell/electro-Fenton combined system. Process Safety and Environmental Protection. 170. 1261–1268. 4 indexed citations
11.
Alamani, Bryan G., et al.. (2022). Environmentally benign and biocompatible sensing platform for electroanalytical determination of bisphenol A in the aquatic environment. Sustainable Chemistry and Pharmacy. 28. 100713–100713. 3 indexed citations
12.
Lin, Po‐Yu, Wei‐Ju Chen, Chia-Ying Chen, et al.. (2021). Comparative Analyses of Single-Cell Transcriptomic Profiles between In Vitro Totipotent Blastomere-like Cells and In Vivo Early Mouse Embryonic Cells. Cells. 10(11). 3111–3111. 6 indexed citations
13.
Chen, Chun-Chi, et al.. (2021). Hydrophobic deep eutectic solvents as attractive media for low-concentration hydrophobic VOC capture. Chemical Engineering Journal. 424. 130420–130420. 66 indexed citations
14.
Park, Sang‐Joon, Megha A. Deshmukh, Byeong-Cheol Kang, et al.. (2020). Review—A Review of Advanced Electronic Applications Based on Carbon Nanomaterials. ECS Journal of Solid State Science and Technology. 9(7). 71002–71002. 14 indexed citations
15.
Wang, Yide, et al.. (2020). Insights into photochemical stability of graphitic carbon nitride-based photocatalysts in water treatment. Carbon. 175. 223–232. 19 indexed citations
16.
Chen, Yen‐Ju, Chia-Ying Chen, Te‐Lun Mai, et al.. (2020). Genome-wide, integrative analysis of circular RNA dysregulation and the corresponding circular RNA-microRNA-mRNA regulatory axes in autism. Genome Research. 30(3). 375–391. 51 indexed citations
17.
Chen, Chia-Ying, et al.. (2018). Carbonaceous nanomaterial-initiated reductive transformation of silver ions in the aqueous environment under sunlight. The Science of The Total Environment. 644. 315–323. 3 indexed citations
18.
Chuang, Trees‐Juen, et al.. (2017). Assessment of imprinting- and genetic variation-dependent monoallelic expression using reciprocal allele descendants between human family trios. Scientific Reports. 7(1). 7038–7038. 5 indexed citations
19.
Chen, Chia-Ying, Li-Yuan Hung, Chan-Shuo Wu, & Trees‐Juen Chuang. (2016). Purifying selection shapes the coincident SNP distribution of primate coding sequences. Scientific Reports. 6(1). 27272–27272. 4 indexed citations
20.

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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