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- GC-MS-based identification and statistical analysis of liposoluble components in the rhizosphere soils of Panax notoginseng. Yi-Jun Qiao, Jia-Jiao Zhang, Jia-Huan Shang, Hong-Tao Zhu, Dong Wang, Chong-Ren Yang, Ying-Jun Zhang
, RSC Adv.
, 2019
, 9
, 20557
- The chemistry and biological activity of the Hyacinthaceae. Dulcie A. Mulholland, Sianne L. Schwikkard, Neil R. Crouch
, Nat. Prod. Rep.
, 2013
, 30
, 1165
- An appraisal of the nutritional properties, therapeutic value, and novel implications of the under-utilized plant, Parkia speciosa. K. Y. Foo
, RSC Adv.
, 2013
, 3
, 18248
- Bioactive composition of Reevesia formosana root and stem with cytotoxic activity potential. Hsun-Shuo Chang, Chu-Hung Lin, Pei-Yu Hsiao, Hung-Ti Peng, Shiow-Ju Lee, Ming-Jen Cheng, Ih-Sheng Chen
, RSC Adv.
, 2017
, 7
, 27040
- Thinking big about small beings – the (yet) underdeveloped microbial natural products chemistry in Brazil. Laura P. Ióca, Pierre-Marie Allard, Roberto G. S. Berlinck
, Nat. Prod. Rep.
, 2014
, 31
, 646
- Enhanced microwave assisted pyrolysis of waste rice straw through lipid extraction with supercritical carbon dioxide. Chanettee Sikhom, Thomas M. Attard, Weerapath Winotapun, Nontipa Supanchaiyamat, Thomas J. Farmer, Vitaliy Budarin, James H. Clark, Andrew J. Hunt
, RSC Adv.
, 2024
, 14
, 29
- Identification of traditional East Asian handmade papers through the multivariate data analysis of pyrolysis-GC/MS data. Bin Han, Jérôme Vial, Shouji Sakamoto, Michel Sablier
, Analyst
, 2019
, 144
, 1230
- Microbial transformation of β-sitosterol: accumulation of 3-(5α-hydroxy-7aβ-methyl-1-oxo-3aαH-hexahydroindan-4α-yl)propionic acid and the X-ray structural identification of its δ-lactone. Ulrike Schömer, William S. Sheldrick, Fritz Wagner
, J. Chem. Soc., Perkin Trans. 1
, 1978
, 336
- Data-driven representative models to accelerate scaled-up atomistic simulations of bitumen and biobased complex fluids. Daniel York, Isaac Vidal-Daza, Cristina Segura, Jose Norambuena-Contreras, Francisco J. Martin-Martinez
, Digital Discovery
, 2024