VIAF

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Leader 00000nz a2200037n 45 0
001 WKP|Q91209660 (VIAF cluster) (Authority/Source Record)
003 WKP
005 20241120235818.0
008 241120nneanz||abbn n and d
035 ‎‡a (WKP)Q91209660‏
024 ‎‡a 0000-0003-1709-7788‏ ‎‡2 orcid‏
024 ‎‡a 56962993100‏ ‎‡2 scopus‏
035 ‎‡a (OCoLC)Q91209660‏
100 0 ‎‡a Fan Zhang‏ ‎‡c researcher (ORCID 0000-0003-1709-7788)‏ ‎‡9 en‏
670 ‎‡a Author's Aquatic behavior and toxicity of polystyrene nanoplastic particles with different functional groups: Complex roles of pH, dissolved organic carbon and divalent cations‏
670 ‎‡a Author's Aquatic toxicity of iron-oxide-doped microplastics to Chlorella pyrenoidosa and Daphnia magna‏
670 ‎‡a Author's Assessment and prediction of joint algal toxicity of binary mixtures of graphene and ionic liquids‏
670 ‎‡a Author's Combined ecotoxicity of binary zinc oxide and copper oxide nanoparticles to Scenedesmus obliquus‏
670 ‎‡a Author's Combined Toxicity of TiO<sub>2</sub> Nanospherical Particles and TiO<sub>2</sub> Nanotubes to Two Microalgae with Different Morphology‏
670 ‎‡a Author's Dissolved Organic Matter Modulates Algal Oxidative Stress and Membrane System Responses to Binary Mixtures of Nano-Metal-Oxides (nCeO2, nMgO and nFe3O4) and Sulfadiazine‏
670 ‎‡a Author's Impacts of low-molecular-weight organic acids on aquatic behavior of graphene nanoplatelets and their induced algal toxicity and antioxidant capacity‏
670 ‎‡a Author's Physicochemical properties and ecotoxicological effects of yttrium oxide nanoparticles in aquatic media: Role of low molecular weight natural organic acids‏
670 ‎‡a Author's Prediction of the Joint Toxicity of Multiple Engineered Nanoparticles: The Integration of Classic Mixture Models and In Silico Methods‏
909 ‎‡a (orcid) 0000000317097788‏ ‎‡9 1‏
909 ‎‡a (scopus) 56962993100‏ ‎‡9 1‏
919 ‎‡a aquaticbehaviorandtoxicityofpolystyrenenanoplasticparticleswithdifferentfunctionalgroupscomplexrolesofphdissolvedorganiccarbonanddivalentcations‏ ‎‡A Aquatic behavior and toxicity of polystyrene nanoplastic particles with different functional groups: Complex roles of pH, dissolved organic carbon and divalent cations‏ ‎‡9 1‏
919 ‎‡a aquatictoxicityofironoxidedopedmicroplasticstochlorellapyrenoidosaanddaphniamagna‏ ‎‡A Aquatic toxicity of iron-oxide-doped microplastics to Chlorella pyrenoidosa and Daphnia magna‏ ‎‡9 1‏
919 ‎‡a assessmentandpredictionofjointalgaltoxicityofbinarymixturesofgrapheneandionicliquids‏ ‎‡A Assessment and prediction of joint algal toxicity of binary mixtures of graphene and ionic liquids‏ ‎‡9 1‏
919 ‎‡a combinedecotoxicityofbinaryzincoxideandcopperoxidenanoparticlestoscenedesmusobliquus‏ ‎‡A Combined ecotoxicity of binary zinc oxide and copper oxide nanoparticles to Scenedesmus obliquus‏ ‎‡9 1‏
919 ‎‡a combinedtoxicityoftiosub2subnanosphericalparticlesandtiosub2subnanotubesto2microalgaewithdifferentmorphology‏ ‎‡A Combined Toxicity of TiO<sub>2</sub> Nanospherical Particles and TiO<sub>2</sub> Nanotubes to Two Microalgae with Different Morphology‏ ‎‡9 1‏
919 ‎‡a dissolvedorganicmattermodulatesalgaloxidativestressandmembranesystemresponsestobinarymixturesofnanometaloxidesnceo2nmgoandnfe3o4andsulfadiazine‏ ‎‡A Dissolved Organic Matter Modulates Algal Oxidative Stress and Membrane System Responses to Binary Mixtures of Nano-Metal-Oxides (nCeO2, nMgO and nFe3O4) and Sulfadiazine‏ ‎‡9 1‏
919 ‎‡a impactsoflowmolecularweightorganicacidsonaquaticbehaviorofgraphenenanoplateletsandtheirinducedalgaltoxicityandantioxidantcapacity‏ ‎‡A Impacts of low-molecular-weight organic acids on aquatic behavior of graphene nanoplatelets and their induced algal toxicity and antioxidant capacity‏ ‎‡9 1‏
919 ‎‡a physicochemicalpropertiesandecotoxicologicaleffectsofyttriumoxidenanoparticlesinaquaticmediaroleoflowmolecularweightnaturalorganicacids‏ ‎‡A Physicochemical properties and ecotoxicological effects of yttrium oxide nanoparticles in aquatic media: Role of low molecular weight natural organic acids‏ ‎‡9 1‏
919 ‎‡a predictionofthejointtoxicityofmultipleengineerednanoparticlestheintegrationofclassicmixturemodelsandinsilicomethods‏ ‎‡A Prediction of the Joint Toxicity of Multiple Engineered Nanoparticles: The Integration of Classic Mixture Models and In Silico Methods‏ ‎‡9 1‏
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