Area of research
Plant Science · Pollution
Research interest
Research focused on Soil water and Resistome, with related work in Ionic liquid, Manure, Fertilizer. Notable publications include 'Bacterial rather than fungal community composition is associated with microbial activities and nutrient-use efficiencies in a paddy soil with short-term organic amendments', 'Dynamics of the antibiotic resistome in agricultural soils amended with different sources of animal manures over three consecutive years', and 'Green Method for the Synthesis of Chromeno[2,3- c ]pyrazol-4(1 H )-ones through Ionic Liquid Promoted Directed Annulation of 5-(Aryloxy)-1 H -pyrazole-4-carbaldehydes in Aqueous...'.
Determining optimal nitrogen management to improve rice yield, quality and nitrogen use efficiency based on multi‐index decision analysis method
Long-term manure inputs induce a deep selection on agroecosystem soil antibiotic resistome
Dynamics of the antibiotic resistome in agricultural soils amended with different sources of animal manures over three consecutive years
Active phoD-harboring bacteria are enriched by long-term organic fertilization
Legacy effects of 8-year nitrogen inputs on bacterial assemblage in wheat rhizosphere
Bacterial rather than fungal community composition is associated with microbial activities and nutrient-use efficiencies in a paddy soil with short-term organic amendments
Green Method for the Synthesis of Chromeno[2,3-<i>c</i>]pyrazol-4(1<i>H</i>)-ones through Ionic Liquid Promoted Directed Annulation of 5-(Aryloxy)-1<i>H</i>-pyrazole-4-carbaldehydes in Aqueous Media
ChemInform Abstract: Recent Applications of Aryltriazenes in Organic Synthesis via C—N/N—N Bond Cleavage
ChemInform Abstract: Reusable Ionic Liquid‐Catalyzed Oxidative Coupling of Azoles and Benzylic Compounds via sp<sup>3</sup> C—N Bond Formation under Metal‐Free Conditions.
ChemInform Abstract: Green Method for the Synthesis of Chromeno[2,3‐c]pyrazol‐4(1H)‐ones Through Ionic Liquid Promoted Directed Annulation of 5‐(Aryloxy)‐1H‐pyrazole‐4‐carbaldehydes in Aqueous Media.
Optimum conditions of extracting and detecting rutin from stigma maydis by response surface analysis
Caoye kexue 2013cited by 0position: first