[1]Yinglin Liu*, Xiaoshuai Deng, Jiachen Sun, et al.The hidden threat from per- and polyfluoroalkyl substances and co-contaminants: Occurrence, bioaccumulation, and joint toxicity.Chemical Engineering Journal,2026,530:172802. [2]Yinglin Liu, Jilong Xiong, Siyi Sun, et al. Mechanistic insights into synergistic forces of root exudates and green synthesized nano zero-valent iron to alleviate Cd accumulation in rice.Process Safety and Environmental Protection, 2026, 206: 108328. [3]Yinglin Liu, Lei Peng, Chunmei Zhang, et al. A heuristic strategy using phytogenic zero-valent iron nanocomposite for in-situ remediation of cd-contaminated soils and reduction of cd accumulation in wheat.Journal of Soils and Sediments, 2026, 26(3): 60. [4] Yanhui Dai, Dina Ding, Minggao Cui, Pingping Duan,Yinglin Liu*(通讯作者), et al. Biotransformation of per- and polyfluoroalkyl substances (PFAS) in organisms.Chemical Engineering Journal, 2025, 524: 168618. [5] Xuanxuan Zhang, Dina Ding,Yinglin Liu*(通讯作者), et al. Microbial community dynamics and biogeochemical cycling in microplastic-contaminated sediment.Nanomaterials, 2025, 15(12): 902. [6]Yinglin Liu, Xuesong Cao, Le Yue, et al. Foliar-applied cerium oxide nanomaterials improve maize yield under salinity stress: Reactive oxygen species homeostasis and rhizobacteria regulation.Environmental Pollution, 2022, 299: 118900. [7]Yinglin Liu, Zhenggao Xiao, Feiran Chen, et al. Metallic oxide nanomaterials act as antioxidant nanozymes in higher plants: Trends, meta-analysis, and prospect.Science of the Total Environment, 2021, 780: 146578. [8]Yinglin Liu, Le Yue, Chuanxi Wang, et al. Photosynthetic response mechanisms in typical C3 and C4 plants upon La2O3 nanoparticle exposure.Environmental Science: Nano, 2020, 7(1): 81~92. [9]Yinglin Liu, Le Yue, Zhenyu Wang, et al. Processes and mechanisms of photosynthesis augmented by engineered nanomaterials.Environmental Chemistry, 2019, 16 (6): 430~445. [10]Yinglin Liu, Lina Xu, Yanhui Dai. Phytotoxic effects of lanthanum oxide nanoparticles on maize (Zea maysL.).IOP Conference Series:Earth and Environmental Science,2018, 113: 012020. [11] LeiPeng,Yinglin Liu(共同一作),NanXu, et al. Synergistic force of green-synthesized zero-valent iron nanocomposites combined with different fertilizers for inhibiting cadmium accumulation in wheat.Environmental Science: Nano,2024,11: 4475-4486. [12] Xuesong Cao, Xiaofei Chen,Yinglin Liu, et al. Lanthanum Silicate Nanomaterials Enhance Sheath Blight Resistance in Rice: Mechanisms of Action and Soil Health Evaluation.ACS Nano,2023, 17: 15821−15835. [13] Yanhui Dai, Hanyu Yuan, Xuesong Cao,Yinglin Liuet al. La2O3Nanoparticles Can Cause Cracking of Tomato Fruit through Genetic Reconstruction.ACS Nano, 2024, 18, 10, 7379~7390. [14] Siyi Sun, Xuelian Wang, Yan Liang, Nan Xu,Yinglin Liu, et al. Enhanced photoaging of functionalized nanoplastics by cadmium ions and corresponding diverse transport behaviors of products in porous media: Mechanisms and modeling.Environmental Science & Technology, 2025, 59(19): 9779−9789. [15] Qian Yang, Lanqing Xu, Xiaofan Yang,Yinglin Liu, et al. Fate and enzymatic response of co-exposed photoaged nanoplastic and PFAS: Insights from a human gastrointestinal simulation.Journal of Hazardous Materials, 2025, 496: 139274. [16] Le Yue, Mengna Tao, Lanqing Xu, Chuanxi Wang, Yuao Xu,Yinglin Liu. Size-dependent photocatalytic inactivation of Microcystis aeruginosa and degradation of microcystin by a copper metal organic framework.Journal of Hazardous Materials, 2024, 462: 132799. [17] Zhenggao Xiao, Le Yue, Chuanxi Wang, Feiran Chen, Ying Ding,Yinglin Liu, et al. Downregulation of the photosynthetic machinery and carbon storage signaling pathways mediate La2O3nanoparticle toxicity on radish taproot formation.Journal of Hazardous Materials, 2021, 411: 124971. [18]朱立祺,陈菲然,陶梦娜,刘璎琳等.人工纳米材料增强植物耐盐性的机理研究.环境科学研究, 2022, 1~17. |