Upload Records Snowball Search Search OpenAlex
About the database ScholarIQanswers from OpenAlex & ORCID
How has Peiyu Mao's publication output changed over time?
ScholarIQpublication output · 2023–2024
Output declined33% over the shown period — from 6 works in 2023 to 4 in 2024.
6
4
20232024
What are the most-cited papers on Peiyu Mao?
ScholarIQmost cited works
Autophagy-dependent ferroptosis is involved in the development of endometriosis
Hui Li, Huadi Yang, Shenyi Lu, Xinyan Wang, Xinhe Shi, Peiyu Mao
S144560499. 202320 CitationsOPEN ACCESS
Catalyst‐ and Oxidant‐Free Electrochemical Regioselective Halogenation and Trifluoromethylation of 4<i>H</i>‐Pyrido[1,2‐<i>a</i>]pyrimidin‐4‐ones
Mei-Yun Su, Li‐Na Guo, Peiyu Mao, Meng Xiao, Wenjie Liu, Shao‐Hua Wang
S21317199. 202311 Citations
Sexually Dimorphic Response to Hepatic Injury in Newborn Suffering from Intrauterine Growth Restriction
Yusen Wei, Wenjie Tang, Peiyu Mao, Jiangdi Mao, Zhixiang Ni, Kangwei Hou, Teresa G. Valencak, Da‐Ren Liu, Junfang Ji, Haifeng Wang
S2737737698. 202410 CitationsOPEN ACCESS
Study on the Mechanism of Estrogen Regulating EndometrialFibrosis After Mechanical Injury Via MIR-21-5P/PPARΑ/FAO Axis
Shuning Ding, Yunyun Hu, Peiyu Mao, Qiu Lin, Zhitao Yao
S50220609. 20236 Citations
Knockdown of PROM2 Enhances Paclitaxel Sensitivity in Endometrial Cancer Cellsby Regulating the AKT/FOXO1 Pathway
Jun Jiang, Chen Zhang, Jianfen Wang, Yingping Zhu, Xinyan Wang, Peiyu Mao
S159246083. 20236 Citations
Related on ScholarIQ
Zhejiang Chinese Medical University
Institution
Autophagy-dependent ferroptosis is involved in the development of endometriosis
Paper
Catalyst‐ and Oxidant‐Free Electrochemical Regioselective Halogenation and Trifluoromethylation of 4<i>H</i>‐Pyrido[1,2‐<i>a</i>]pyrimidin‐4‐ones
Paper
Sexually Dimorphic Response to Hepatic Injury in Newborn Suffering from Intrauterine Growth Restriction
Paper
Study on the Mechanism of Estrogen Regulating EndometrialFibrosis After Mechanical Injury Via MIR-21-5P/PPARΑ/FAO Axis
Paper
Knockdown of PROM2 Enhances Paclitaxel Sensitivity in Endometrial Cancer Cellsby Regulating the AKT/FOXO1 Pathway
Paper