1 |
Microwave-assisted rapid synthesis of Cu2S:ZnIn2S4 marigold-like nanoflower heterojunctions and enhanced visible light photocatalytic hydrogen production via Pt sensitization Mahadik MA, Patil RP, Chae WS, Lee HH, Cho M, Jang JS Journal of Industrial and Engineering Chemistry, 108, 203, 2022 |
2 |
Hydrogen generation from catalytic hydrolysis of sodium borohydride by a Cu and Mo promoted Co catalyst Deonikar VG, Rathod PV, Pornea AM, Puguan JMC, Park KS, Kim H Journal of Industrial and Engineering Chemistry, 86, 167, 2020 |
3 |
Marigold shaped N-rGO-MoS2-Ni(OH)(2) nanocomposite as a bifunctional electrocatalyst for the promotion of overall water splitting in alkaline medium Debata S, Banerjee S, Sharma PK Electrochimica Acta, 303, 257, 2019 |
4 |
Modeling and optimizing microwave-assisted extraction of antioxidant compounds from marigold (Calendula offieinalis L.) using response surface methodology Bekdeser B Turkish Journal of Chemistry, 43(5), 1457, 2019 |
5 |
Spray dried powder of lutein-rich supercritical carbon dioxide extract of gamma-irradiated marigold flowers: Process optimization, characterization and food application Pal S, Bhattacharjee P Powder Technology, 327, 512, 2018 |
6 |
Evaluation of chromatographic separation of free lutein and fatty acids in de-esterified marigold lutein Clowutimon W, Boonnoun P, Ponpesh P, Shotipruk A Separation Science and Technology, 53(9), 1445, 2018 |
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Lutein production from biomass: Marigold flowers versus microalgae Lin JH, Lee DJ, Chang JS Bioresource Technology, 184, 421, 2015 |
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Supercritical anti-solvent micronization of marigold-derived lutein dissolved in dichloromethane and ethanol Boonnoun P, Nerome H, Machmudah S, Goto M, Shotipruk A Journal of Supercritical Fluids, 77, 103, 2013 |
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Supercritical anti-solvent micronization of chromatography purified marigold lutein using hexane and ethyl acetate solvent mixture Boonnoun P, Nerome H, Machmudah S, Goto M, Shotipruk A Journal of Supercritical Fluids, 80, 15, 2013 |
10 |
Recovery of Free Lutein From Tagetes erecta: Determination of Suitable Saponification and Crystallization Conditions Vechpanich J, Shotipruk A Separation Science and Technology, 46(2), 265, 2011 |