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Fe─NC porous oxygen reduction electrocatalysts are prepared employing a 2,4,6‐Triaminopyrimidine‐based porous organic polymer, a Mg2+ Lewis acid, and a low‐temperature cation exchange protocol. Using the polymer precursor achieves high pyrolysis yields and results in atomically dispersed FeNx sites. The resulting catalysts feature hierarchical porosity
Eliot Petitdemange +11 more
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Assessing multiple techniques for identifying various sources of chloride to urban groundwater and streams. [PDF]
Lackey RJ, Roy JW, Mackie C, Levison J.
europepmc +1 more source
Response of <i>Atalantia buxifolia</i> to Salt Stress Based on Physiological and Transcriptome Analysis. [PDF]
Yang Y +5 more
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Physiological and transcriptomic insights into the molecular mechanisms of salt stress adaptation in Gardenia jasminoides. [PDF]
Li W +8 more
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Durability and Microstructural Evolution of PVA-Fiber-Reinforced Concrete Under Coupled Sulfate Attack and Freeze-Thaw Conditions. [PDF]
Wu H, Shen C, Lv C, Sun Y, Qu S, Zhou X.
europepmc +1 more source
Effects of Salt Stress on Earthworm Function and Compost Quality During Vermicomposting of Kitchen Wastes. [PDF]
Mao H, Ding J, Huang W, Huang K, Yang R.
europepmc +1 more source
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Energy and Environmental Science, 2019
A bimodal porous evaporator is developed for efficient, stable, and salt-rejecting desalination of seawater and high-concentration brines.
Shuaiming He, Chaoji Chen, Yudi Kuang
exaly +2 more sources
A bimodal porous evaporator is developed for efficient, stable, and salt-rejecting desalination of seawater and high-concentration brines.
Shuaiming He, Chaoji Chen, Yudi Kuang
exaly +2 more sources

