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Journal of Hazardous Materials|November 10, 2022
Integrating FTIR 2D correlation analyses, regular and omics analyses studies on the interaction and algal toxicity mechanisms between graphene oxide and cadmiumKangying Wu, Yuhao Li, Qixing Zhou, et al.Journal of Hazardous Materials|May 15, 2026
Association of microplastic pollution with coral resilience in the presence of sea surface temperature anomaliesXu Dong, Xiangang Hu, Kaishuo Lu, et al.Toxicology Letters|October 26, 2011
Polymeric nanoparticle-aptamer bioconjugates can diminish the toxicity of mercury in vivoXiangang Hu, Kurt Lomas Tulsieram, Qixing Zhou, et al.Advanced Biology|April 14, 2021
Stress Response and Nutrient Homeostasis in Lettuce (Lactuca sativa) Exposed to Graphene Quantum Dots Are Modulated by Particle Surface FunctionalizationPeng Zhang, Xinyue Wu, Zhiling Guo, et al.Scientific Reports|August 20, 2014
Graphene oxide amplifies the phytotoxicity of arsenic in wheatXiangang Hu, Jia Kang, Kaicheng Lu, et al.Environmental Science & Technology|May 27, 2014
Humic acid acts as a natural antidote of graphene by regulating nanomaterial translocation and metabolic fluxes in vivoXiangang Hu, Li Mu, Jia Kang, et al.Environmental Science & Technology|May 21, 2025
Spatial Risks of Microplastics in Soils and the Cascading Effects ThereofPeng Deng, Xiangang Hu, Ruiqi Wang, et al.Biomaterials|March 16, 2020
A 2D-2D heterojunction Bi2WO6/WS2-x as a broad-spectrum bactericide: Sulfur vacancies mediate the interface interactions between biology and nanomaterialsXuan Hou, Tonglei Shi, Changhong Wei, et al.Journal of Hazardous Materials|April 7, 2023
Concurrence of microplastics and heat waves reduces rice yields and disturbs the agroecosystem nitrogen cycleShuqing Guo, Li Mu, Shan Sun, et al.Water Research|July 24, 2025
Natural marine nanocolloids modulate the phytotoxicity of polystyrene nanoplastics on cyanobacterium Synechococcus spHui Zeng, Qixing Zhou, Xiangang Hu, et al.Pageof 15