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Environmental Science & Technology|January 21, 2017
Systemic Stress and Recovery Patterns of Rice Roots in Response to Graphene Oxide NanosheetsQixing Zhou, Xiangang HuScientific Reports|January 22, 2014
Novel hydrated graphene ribbon unexpectedly promotes aged seed germination and root differentiationXiangang Hu, Qixing ZhouACS Applied Materials & Interfaces|July 30, 2015
Envelopment-Internalization Synergistic Effects and Metabolic Mechanisms of Graphene Oxide on Single-Cell Chlorella vulgaris Are Dependent on the Nanomaterial Particle SizeShaohu Ouyang, Xiangang Hu, Qixing ZhouEnvironmental Science & Technology|February 17, 2015
Ambient water and visible-light irradiation drive changes in graphene morphology, structure, surface chemistry, aggregation, and toxicityXiangang Hu, Ming Zhou, Qixing ZhouJournal of Hazardous Materials|May 25, 2012
Occurrence, accumulation, attenuation and priority of typical antibiotics in sediments based on long-term field and modeling studiesXiangang Hu, Kangxin He, Qixing ZhouEnvironmental Science & Technology|October 26, 2018
The Phases of WS2 Nanosheets Influence Uptake, Oxidative Stress, Lipid Peroxidation, Membrane Damage, and Metabolism in AlgaePeng Yuan, Qixing Zhou, Xiangang HuEnvironmental Pollution (Barking, Essex : 1987)|June 29, 2010
Occurrence and source analysis of typical veterinary antibiotics in manure, soil, vegetables and groundwater from organic vegetable bases, northern ChinaXiangang Hu, Qixing Zhou, Yi LuoEcotoxicology and Environmental Safety|May 18, 2019
Integrating multi-omics and regular analyses identifies the molecular responses of zebrafish brains to graphene oxide: Perspectives in environmental criteriaJing Sun, Qixing Zhou, Xiangang HuEnvironmental Science & Technology|January 10, 2020
WS2 Nanosheets at Noncytotoxic Concentrations Enhance the Cytotoxicity of Organic Pollutants by Disturbing the Plasma Membrane and Efflux PumpsPeng Yuan, Qixing Zhou, Xiangang HuAdvanced Science (Weinheim, Baden-Wurttemberg, Germany)|June 8, 2018
Graphene Oxide Quantum Dots Reduce Oxidative Stress and Inhibit Neurotoxicity In Vitro and In Vivo through Catalase-Like Activity and Metabolic RegulationChaoxiu Ren, Xiangang Hu, Qixing ZhouPageof 62