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2023年03月30日 16:18 返回列表

(17)Lu TY,et al.Putative adverse outcome pathways of the male reproductive toxicity derived from toxicological studies of perfluoroalkyl acids.Science of The Total Environment,2023,873,162439.

(16)Li MJ,et al.Chemo/Biosensors towards Effect-Directed Analysis: An Overview of Current Status and Future Development.TRAC-TRENDS IN ANALYTICAL CHEMISTRY,2023,158,116824.

(15)Zhang BH,et al.Cathodic Photoelectrochemical Immunoassay with Dual Signal Amplification for the Ultrasensitive Detection of DNA Damage Biomarkers.Biosensors and Bioelectronics,2023,224.

(14)Shen DH,et al.典型全氟烷基酸的光/电催化降解:性能提升策略与反应机制.环境化学,2023,42(8).

全文链接:https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C45S0n9fL2suRadTyEVl2pW9UrhTDCdPD66sJ03WGTEeoA1EOBNKf8wUHinkVlUJkFLQs4ZtlaJFZir3fN8JHcLD&uniplatform=NZKPT

(13)Shen LY,et al.高效降解环境新污染物四环素的复合光催化剂:从材料设计到降解机制研究.环境化学,2023,42(9).

(12)Lou HW,et al.Water quality criteria derivation and tiered ecological risk evaluation of antifouling biocides in marine environment.Marine Pollution Bulletin,2023,187,114500.

全文链接:https://doi.org/10.1016/j.marpolbul.2022.114500

(11)Lie YY,et al.Antibiotics disrupt lipid metabolism in zebrafish (Danio rerio) larvae and 3T3-L1 preadipocytes.Science of The Total Environment,2023,858,159855.

(10)Peng BX,et al.Perfluorooctanoic acid alternatives hexafluoropropylene oxides exert male reproductive toxicity by disrupting blood-testis barrier.Science of The Total Environment,2022,846:157313.

(9)Lou HW,et al.船舶防污杀生剂的水生生物毒性和近海海域分布特征研究进展.环境化学,2022,41(11),3493-3513.

全文链接:https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C44YLTlOAiTRKibYlV5Vjs7ioT0BO4yQ4m_mOgeS2ml3UNJRw4p0oll0HWdZTIQc2zyl0p2ta-hymqLs7SPK94fo&uniplatform=NZKPT

(8)Chen K,et al.Controllable Growth and Defect Engineering of Vertical PtSe2 Nanosheets for Electrocatalytic Hydrogen Evolution.ACS Energy Letters,2022,7(10),3675-3684.

全文链接:https://doi.org/10.1021/acsenergylett.2c01810

(7)Chen K,et al.Functions and performance of ionic liquids in enhancing electrocatalytic hydrogen evolution reactions: a comprehensive review.RSC Advances,2022,12(30),19452-19459.

全文链接:https://doi.org/10.1039/D2RA02547G

(6)Monika M, et al. Physical properties of carbon nanomaterials and nanoceria affect pathways important to the nodulation competitiveness of the symbiotic N2‐fixing bacterium bradyrhizobium diazoefficiens. Small.2020, 16(21): 1906055.

(5)Hong WJ, et al. Soil concentrations and soil-air exchange of  polycyclic aromatic hydrocarbons in five asian countries. Science of The Total Environment, 2020, 711: 135223.

全文链接:https://doi.org/10.1016/j.scitotenv.2019.135223

(4)Hong WJ, et al. Distribution, seasonal trends, and lung cancer risk of atmospheric polycyclic aromatic hydrocarbons in North China: A three-year case study in Dalian city. Ecotoxicology and Environmental Safety, 2020, 196: 110526.

全文链接:https://doi.org/10.1016/j.ecoenv.2020.110526

(3)Zhang YR, et al. Interplay between engineered nanomaterials and microbiota. Environmental Science. Nano, 2020, 7(9): 2454-2485.

(2)Huang WQ, et al. Antibacterial nanomaterials for environmental and consumer product applications. NanoImpact, 2020, 20: 100268.

(1)Mortimer M, et al.  Evaluation of frameworks proposed as protective of antimicrobial resistance propagation in the environment. Environment International. 2020, 144: 106053. 

(以上更新截止于2023年3月30日)


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