日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

pK(a) Data-Driven Insights into Multiple Linear Regression Hydrolysis QSARs: Applicability to Perfluorinated Alkyl Esters

基于 pK(a) 数据的多元线性回归水解 QSAR 分析:对全氟烷基酯的适用性

Lazare, Jovian; Tebes-Stevens, Caroline; Weber, Eric J; Shields, Lindsay K

A multiple linear regression approach to the estimation of carboxylic acid ester and lactone alkaline hydrolysis rate constants

采用多元线性回归方法估算羧酸酯和内酯碱性水解速率常数

Lazare, J; Tebes-Stevens, C; Weber, E J

Per- and polyfluoroalkyl substances in the environment

环境中的全氟和多氟烷基物质

Evich, Marina G; Davis, Mary J B; McCord, James P; Acrey, Brad; Awkerman, Jill A; Knappe, Detlef R U; Lindstrom, Andrew B; Speth, Thomas F; Tebes-Stevens, Caroline; Strynar, Mark J; Wang, Zhanyun; Weber, Eric J; Henderson, W Matthew; Washington, John W

Development of a PFAS reaction library: identifying plausible transformation pathways in environmental and biological systems

构建 PFAS 反应库:识别环境和生物系统中可能的转化途径

Weber, Eric J; Tebes-Stevens, Caroline; Washington, John W; Gladstone, Rachel

Relationships Between Aquatic Toxicity, Chemical Hydrophobicity, and Mode of Action: Log Kow Revisited

水生毒性、化学物质疏水性和作用方式之间的关系:Log Kow 的再探讨

Lambert, Faith N; Vivian, Deborah N; Raimondo, Sandy; Tebes-Stevens, Caroline T; Barron, Mace G

Reaction Library to Predict Direct Photochemical Transformation Products of Environmental Organic Contaminants in Sunlit Aquatic Systems

用于预测阳光照射水生系统中环境有机污染物直接光化学转化产物的反应库

Yuan, Chenyi; Tebes-Stevens, Caroline; Weber, Eric J

Demonstration of a consensus approach for the calculation of physicochemical properties required for environmental fate assessments

展示一种用于环境归趋评估的物理化学性质计算的共识方法

Tebes-Stevens, Caroline; Patel, Jay M; Koopmans, Michaela; Olmstead, John; Hilal, Said H; Pope, Nick; Weber, Eric J; Wolfe, Kurt

Prediction of Hydrolysis Products of Organic Chemicals under Environmental pH Conditions

环境pH条件下有机化学品水解产物的预测

Tebes-Stevens, Caroline; Patel, Jay M; Jones, W Jack; Weber, Eric J

Developing and applying metamodels of high resolution process-based simulations for high throughput exposure assessment of organic chemicals in riverine ecosystems

开发和应用高分辨率过程模拟元模型,用于对河流生态系统中的有机化学物质进行高通量暴露评估

Craig Barber, M; Isaacs, Kristin K; Tebes-Stevens, Caroline