Jingjing Wang
5 Papers
Jingjing Wang is an academic researcher. The author has contributed to research in topics: Chemistry & Biology. The author has an hindex of 1, co-authored 3 publications.
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Papers
A fluorescent, chirality-responsive, and water-soluble cage as a multifunctional molecular container for drug delivery.
TL;DR: A host-guest DDS formed from a fluorescent, chirality-responsive, and water-soluble tetraphenylethene-based octacationic cage as a fluorescent/chiral probe, solubilizer, and molecular cargo, which can recognize chiral nucleoside drugs, enhance the solubility of insoluble drugs, and protect drugs from the outside environment by forming host-Guest complexes in aqueous solution is reported.
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Polyol based deep eutectic solvent-assisted pretreatment for enhanced lutein extraction from Chlorella pyrenoidosa
Gul Muhammad,Jingjing Wang,Wen-Li Xiong,Yongkun Lv,Shen Zhang,Anqi Zhao,Parisa Jahanbakhsh-bonab,Alexei Solovchenko,Jingliang Xu Xu,Md. Asraful Alam +9 more
TL;DR: In this article , a green and sustainable extraction procedure to obtain lutein from microalgae was developed, where a series of acidic and polyol based deep eutectic solvents (DESs) were synthesized to establish a novel pretreatment process.
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Insight into the relationship between effective active sites and ultra-deep adsorption desulfurization performance of CuCeY with different Cu precursors
Jingjing Wang,Lihong Li,Zhihui Wen,Jinchuan Zhao,Xi Wei,Junjie Liao,Liping Chang,Kechang Xie +7 more
TL;DR: This study investigates the impact of Cu precursors on CuCeY adsorbents' active sites and ultra-deep adsorption desulfurization performance, revealing that Cu(Ac)2 enhances electron transfer and Cu+ migration, resulting in superior thiophene adsorption capacity.
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Investigation on the active site location, structure and ultra-deep desulfurization performance of CuY zeolite
Jingjing Wang,Jinchuan Zhao,Liping Chang,Weiren Bao +3 more
TL;DR: CuY zeolite modified with Cu shows promise for ultra-deep desulfurization, with Cu location in supercages crucial for effectiveness; two strategies, pH adjustment and heat treatment, effectively regulate Cu location and enhance desulfurization efficiency up to 82.3%.
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Synthesis of the Hierarchical TS-1 Using TritonX Homologues for Hydroxylation of Benzene
Jingjing Wang,Xiao-Fang Shen,Yunfei Zhang,Jianjun Lu,Miaoqing Liu,Lixia Ling,Junjie Liao,Liping Chang,Kechang Xie +8 more
TL;DR: In this paper , the authors used the TritonX homologous with varying amounts of ethylene oxide groups to synthesize hierarchical TS-1 zeolites with a pore size range of 3.5-4.5 nm.
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