Determine the necessary mass, volume, or concentration for preparing a solution.
Activity Type | Activity Value -log(M) | Mechanism of Action | Activity Reference | Publications (PubMed IDs) |
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SKU | Size | Availability | Price | Qty |
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T140395-200mg | 200mg | Available within 8-12 weeks(?) Production requires sourcing of materials. We appreciate your patience and understanding. | $41.90 | |
T140395-1g | 1g | In stock | $165.90 | |
T140395-5g | 5g | In stock | $747.90 | |
T140395-25g | 25g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $3,361.90 | |
T140395-50g | 50g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $6,050.90 |
Synonyms | 1-(4-Chlorophenyl)-4,4-dimethyl-3-(1H-1,2,4-triazol-1-ylmethyl)-3-pentanol # | (.+/-.)-.alpha.-[2-(4-Chlorophenyl)ethyl]-.alpha.-(1,1-dimethylethyl)-1H-1,2,4-triazole-1-ethanol | BW-1263W94 | 1-(4-chlorophenyl)-3-(1,2,4-triazol-1-ylmethyl)-4,4-dimethyl-pe |
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Specifications & Purity | ≥97% |
Shipped In | Normal |
Product Description | Tebuconazole is a triazole fungicide used agriculturally to treat plant pathogenic fungi. It is listed as a potential carcinogen by the EPA. |
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IUPAC Name | 1-(4-chlorophenyl)-4,4-dimethyl-3-(1,2,4-triazol-1-ylmethyl)pentan-3-ol |
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INCHI | InChI=1S/C16H22ClN3O/c1-15(2,3)16(21,10-20-12-18-11-19-20)9-8-13-4-6-14(17)7-5-13/h4-7,11-12,21H,8-10H2,1-3H3 |
InChi Key | PXMNMQRDXWABCY-UHFFFAOYSA-N |
Canonical SMILES | CC(C)(C)C(CCC1=CC=C(C=C1)Cl)(CN2C=NC=N2)O |
Isomeric SMILES | CC(C)(C)C(CCC1=CC=C(C=C1)Cl)(CN2C=NC=N2)O |
RTECS | XZ4803270 |
PubChem CID | 86102 |
Molecular Weight | 307.82 |
Reaxy-Rn | 6686475 |
Enter Lot Number to search for COA:
Find and download the COA for your product by matching the lot number on the packaging.
Lot Number | Certificate Type | Date | Item |
---|---|---|---|
H1521092 | Certificate of Analysis | Apr 13, 2023 | T140395 |
A2331350 | Certificate of Analysis | Feb 03, 2023 | T140395 |
F2428067 | Certificate of Analysis | Feb 03, 2023 | T140395 |
F2210504 | Certificate of Analysis | Jun 17, 2022 | T140395 |
F2210505 | Certificate of Analysis | Jun 17, 2022 | T140395 |
F2210761 | Certificate of Analysis | Jun 17, 2022 | T140395 |
F2210762 | Certificate of Analysis | Jun 17, 2022 | T140395 |
D1824049 | Certificate of Analysis | Feb 16, 2022 | T140395 |
Solubility | Soluble in water (36 mg/L)., |
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Flash Point(°C) | >100°C |
Melt Point(°C) | 102.4°C |
RTECS | XZ4803270 |
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Reaxy-Rn | 6686475 |
Merck Index | 9092 |
1. Xin-He Yu, Jin Dong, Cheng-Peng Fan, Meng-Xi Chen, Min Li, Bai-Feng Zheng, Ya-Fang Hu, Hong-Yan Lin, Guang-Fu Yang. (2023) Discovery and Development of 4-Hydroxyphenylpyruvate Dioxygenase as a Novel Crop Fungicide Target. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 71 (49): (19396–19407). [PMID:38035573] |
2. Fei Tong, Zan Yang, Zheng Wang, Wenya Liu, Wanqi Jiang, Lu Zhu, Lei Wang, Mingming Zheng, Ruyan Hou, Yibin Zhou, Yingnan Liu. (2023) Enzyme-mediated Ru@UiO-66@MnO2 NSs/thiamine-based ratiometric fluorescence sensor for visual detection of organophosphorus pesticide residues. FOOD CHEMISTRY, 429 (136945). [PMID:37487398] |
3. Ruiyu Fu, Tingze Ren, Yanhui Zhang, Qingxin Lu, Xiaoli Guo, Xin Di. (2023) Hexafluoroisopropanol-based supramolecular solvent for liquid phase microextraction of triazole fungicides in drinking water and beverages. MICROCHEMICAL JOURNAL, 191 (108842). [PMID:] |
4. Yanli Man, Tian Sun, Chi Wu, Xingang Liu, Mingyuan He. (2023) Evaluating the Impact of Individual and Combined Toxicity of Imidacloprid, Cycloxaprid, and Tebuconazole on Daphnia magna. Toxics, 11 (5): (428). [PMID:37235243] |
5. Yang Liu, Liqiang Liu, Xinxin Xu, Chuanlai Xu, Liguang Xu. (2023) Gold nanoparticle-based lateral flow immunoassay for the rapid detection of flutriafol residues in food. Materials Chemistry Frontiers, 7 (5): (955-963). [PMID:] |
6. Jing Nie, Jiabei Zhou, Yi Shen, Ruimiao Lin, Haihong Hu, Kui Zeng, Huichang Bi, Min Huang, Lushan Yu, Su Zeng, Jing Miao. (2023) Studies on the interaction of five triazole fungicides with human renal transporters in cells. TOXICOLOGY IN VITRO, 88 (105555). [PMID:36669674] |
7. Wanqi Jiang, Zan Yang, Fei Tong, Siyu Zhang, Lu Zhu, Lei Wang, Lunjing Huang, Kang Liu, Mingming Zheng, Yibin Zhou, Ruyan Hou, Yingnan Liu. (2023) Two birds with one stone: An enzyme-regulated ratiometric fluorescent and photothermal dual-mode probe for organophosphorus pesticide detection. BIOSENSORS & BIOELECTRONICS, 224 (115074). [PMID:36638562] |
8. Chengcheng Liu, Rui Chen, Fengmao Liu, Zhiqiang Gao, Xiaohan Li, Yue Wang, Shiyu Wang, Yuyan Li. (2023) Distribution pattern, removal effect, transfer behavior of ten pesticides and one metabolite during the processing of grapes. FOOD RESEARCH INTERNATIONAL, 164 (112398). [PMID:36737981] |
9. Biao Wang, Bo He, Tianyu Chen, Hao Li, Liyifan Chen, Yiliang Chen, Kailin Tian, Kun Yang, Danyu Shen, Wei Yan, Yonghao Ye. (2022) Discovery of Tropolone Stipitaldehyde as a Potential Agent for Controlling Phytophthora Blight and Its Action Mechanism Research. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 70 (28): (8693–8703). [PMID:35793537] |
10. Kun Jia, Guilan Chen, Junquan Zeng, Fasheng Liu, Xinjun Liao, Chen Guo, Jiaqi Luo, Guanghua Xiong, Huiqiang Lu. (2022) Low trifloxystrobin-tebuconazole concentrations induce cardiac and developmental toxicity in zebrafish by regulating notch mediated‐oxidative stress generation. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 241 (113752). [PMID:35709675] |
11. Ruofan Wei, Rong Wang, Yong Li, Moyi Yue, Wanlong Ding. (2022) Identification, biological characteristics and fungicide sensitivity of Colletotrichum species that cause anthracnose on Anemarrhena asphodeloides in China. JOURNAL OF PHYTOPATHOLOGY, 170 (6): (373-381). [PMID:] |
12. Liu Yang, Xu Xinxin, Liu Liqiang, Xu Liguang, Kuang Hua, Xu Chuanlai. (2022) Gold-based lateral-flow strip for the detection of penconazole in watermelon and cucumber samples. Food Quality and Safety, 6 [PMID:] |
13. Li Haocong, Li Yong, Wang Wenfeng, Wan Qun, Yu Xiangyang, Sun Wenjing. (2022) Uptake, translocation, and subcellular distribution of three triazole pesticides in rice. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 29 (17): (25581-25590). [PMID:34850341] |
14. Jingjie Yang, Hongwei Sun, Yucan Liu, Xiaohan Wang, Kamran Valizadeh. (2021) The sorption of Tebuconazole and Linuron from an Aqueous Environment with a Modified Sludge-Based Biochar: Effect, Mechanisms, and Its Persistent Free Radicals Study. Journal of Chemistry, 2021 (2912054). [PMID:] |
15. Xicheng Xie, Lingyun Li, Lumei Wang, Chaoqiang Pan, Dongwei Zhang, Guoqing Shen, Xicheng Xie, Lingyun Li, Lumei Wang, Chaoqiang Pan, Dongwei Zhang, Guoqing Shen. (2021) Colourimetric Detection of Tebuconazole in Aqueous Solution Based on an Unmodified Aptamer and the Aggregation of Gold Nanoparticles. AUSTRALIAN JOURNAL OF CHEMISTRY, 74 (12): (838-846). [PMID:] |
16. Xingtao Bao, Rui Yang, Shilong Jiang, Jinping Zhao, Delu Wang, Dongxue Li, Xian Wu, Baoan Song, Zhuo Chen. (2021) A Novel Sulfone Derivative Controls Lasiodiplodia theobromae in Tea Leaf Spot by Reducing the Ergosterol Content. MOLECULAR PLANT-MICROBE INTERACTIONS, [PMID:33822647] |
17. Suling Zhang, Ziluo Hua, Hongting Zhao, Weixuan Yao, Yuanzhao Wu, Defeng Fu, Jiancong Sun. (2021) Defective Zr-based metal–organic frameworks as sorbent for the determination of fungicides in environmental water samples by rapid dispersive micro-solid-phase extraction coupled to liquid chromatography/mass spectrometry. JOURNAL OF SEPARATION SCIENCE, 44 (10): (2113-2120). [PMID:33721403] |
18. Qing Zhihe, Li Yacheng, Li Younan, Luo Guoyan, Hu Jinlei, Zou Zhen, Lei Yanli, Liu Juewen, Yang Ronghua. (2020) Thiol-suppressed I2-etching of AuNRs: acetylcholinesterase-mediated colorimetric detection of organophosphorus pesticides. MICROCHIMICA ACTA, 187 (9): (1-9). [PMID:32803418] |
19. Lili Kong, Meizhen Huang, Jie Chen, Mengshi Lin. (2020) Fabrication of sensitive silver-decorated cotton swabs for SERS quantitative detection of mixed pesticide residues in bitter gourds. NEW JOURNAL OF CHEMISTRY, 44 (29): (12779-12784). [PMID:] |
20. Lin Li, Xiao-ting Yuan, Zhi-guo Shi, Lan-ying Xu. (2020) Chiral stationary phase based on cellulose derivative coated polymer microspheres and its separation performance. JOURNAL OF CHROMATOGRAPHY A, 1623 (461154). [PMID:32505273] |
21. Cheng Fuliang, Liao Xiaoning, Huang Zhiwen, Xu Liting, Zhou Ying, Zhang Xue. (2020) Highly Sensitive Detection of Thiabendazole Residues in Food Samples Based on Multiwall Carbon Nanotubes Decorated Two-Dimensional Layered Molybdenum Disulfide. Food Analytical Methods, 13 (3): (811-822). [PMID:] |
22. Li Younan, Luo Guoyan, Qing Zhihe, Li Xiaoxuan, Zou Zhen, Yang Ronghua. (2019) Colorimetric aminotriazole assay based on catalase deactivation-dependent longitudinal etching of gold nanorods. MICROCHIMICA ACTA, 186 (8): (1-7). [PMID:31338677] |
23. Weixuan Yao, Zhefeng Fan, Suling Zhang. (2019) Preparation of metal-organic framework UiO-66-incorporated polymer monolith for the extraction of trace levels of fungicides in environmental water and soil samples. JOURNAL OF SEPARATION SCIENCE, 42 (16): (2679-2686). [PMID:31177628] |
24. Guohuan Liang, Xiaojing Guo, Xuecai Tan, Shufen Mai, Zuanguang Chen, Haiyun Zhai. (2019) Molecularly imprinted monolithic column based on functionalized β-cyclodextrin and multi-walled carbon nanotubes for selective recognition of benzimidazole residues in citrus samples. MICROCHEMICAL JOURNAL, 146 (1285). [PMID:] |
25. Qiaomei Sun, Zili Suo, Hongyu Pu, Peixiao Tang, Na Gan, Ruixue Gan, Yuanming Zhai, Xiaohui Ding, Hui Li. (2018) Studies of the binding properties of the food preservative thiabendazole to DNA by computer simulations and NMR relaxation. RSC Advances, 8 (36): (20295-20303). [PMID:35541658] |
26. Yang Jiale, Fan Chen, Kong Dandan, Tang Gang, Zhang Wenbing, Dong Hongqiang, Liang You, Wang Deng, Cao Yongsong. (2018) Synthesis and application of imidazolium-based ionic liquids as extraction solvent for pretreatment of triazole fungicides in water samples. ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 410 (6): (1647-1656). [PMID:29294183] |
27. Xiao-jing Mao, Jing Li, Dan Liu, Ting Qiao, Liyun Ma, Xiao Sun, Li Xu, Zhi-guo Shi. (2018) Flow-through silica: A potential matrix for fast chromatographic enantioseparation with high enantioselectivity. TALANTA, 178 (583). [PMID:29136866] |
28. Xiaofei Han,Jia Chen,Zhan Li,Kaijun Quan,Hongdeng Qiu. (2020-09-07) Magnetic solid-phase extraction of triazole fungicides based on magnetic porous carbon prepared by combustion combined with solvothermal method.. Analytica chimica acta, 1129 (85-97). [PMID:32891394] |
1. Xin-He Yu, Jin Dong, Cheng-Peng Fan, Meng-Xi Chen, Min Li, Bai-Feng Zheng, Ya-Fang Hu, Hong-Yan Lin, Guang-Fu Yang. (2023) Discovery and Development of 4-Hydroxyphenylpyruvate Dioxygenase as a Novel Crop Fungicide Target. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 71 (49): (19396–19407). [PMID:38035573] |
2. Fei Tong, Zan Yang, Zheng Wang, Wenya Liu, Wanqi Jiang, Lu Zhu, Lei Wang, Mingming Zheng, Ruyan Hou, Yibin Zhou, Yingnan Liu. (2023) Enzyme-mediated Ru@UiO-66@MnO2 NSs/thiamine-based ratiometric fluorescence sensor for visual detection of organophosphorus pesticide residues. FOOD CHEMISTRY, 429 (136945). [PMID:37487398] |
3. Ruiyu Fu, Tingze Ren, Yanhui Zhang, Qingxin Lu, Xiaoli Guo, Xin Di. (2023) Hexafluoroisopropanol-based supramolecular solvent for liquid phase microextraction of triazole fungicides in drinking water and beverages. MICROCHEMICAL JOURNAL, 191 (108842). [PMID:] |
4. Yanli Man, Tian Sun, Chi Wu, Xingang Liu, Mingyuan He. (2023) Evaluating the Impact of Individual and Combined Toxicity of Imidacloprid, Cycloxaprid, and Tebuconazole on Daphnia magna. Toxics, 11 (5): (428). [PMID:37235243] |
5. Yang Liu, Liqiang Liu, Xinxin Xu, Chuanlai Xu, Liguang Xu. (2023) Gold nanoparticle-based lateral flow immunoassay for the rapid detection of flutriafol residues in food. Materials Chemistry Frontiers, 7 (5): (955-963). [PMID:] |
6. Jing Nie, Jiabei Zhou, Yi Shen, Ruimiao Lin, Haihong Hu, Kui Zeng, Huichang Bi, Min Huang, Lushan Yu, Su Zeng, Jing Miao. (2023) Studies on the interaction of five triazole fungicides with human renal transporters in cells. TOXICOLOGY IN VITRO, 88 (105555). [PMID:36669674] |
7. Wanqi Jiang, Zan Yang, Fei Tong, Siyu Zhang, Lu Zhu, Lei Wang, Lunjing Huang, Kang Liu, Mingming Zheng, Yibin Zhou, Ruyan Hou, Yingnan Liu. (2023) Two birds with one stone: An enzyme-regulated ratiometric fluorescent and photothermal dual-mode probe for organophosphorus pesticide detection. BIOSENSORS & BIOELECTRONICS, 224 (115074). [PMID:36638562] |
8. Chengcheng Liu, Rui Chen, Fengmao Liu, Zhiqiang Gao, Xiaohan Li, Yue Wang, Shiyu Wang, Yuyan Li. (2023) Distribution pattern, removal effect, transfer behavior of ten pesticides and one metabolite during the processing of grapes. FOOD RESEARCH INTERNATIONAL, 164 (112398). [PMID:36737981] |
9. Biao Wang, Bo He, Tianyu Chen, Hao Li, Liyifan Chen, Yiliang Chen, Kailin Tian, Kun Yang, Danyu Shen, Wei Yan, Yonghao Ye. (2022) Discovery of Tropolone Stipitaldehyde as a Potential Agent for Controlling Phytophthora Blight and Its Action Mechanism Research. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 70 (28): (8693–8703). [PMID:35793537] |
10. Kun Jia, Guilan Chen, Junquan Zeng, Fasheng Liu, Xinjun Liao, Chen Guo, Jiaqi Luo, Guanghua Xiong, Huiqiang Lu. (2022) Low trifloxystrobin-tebuconazole concentrations induce cardiac and developmental toxicity in zebrafish by regulating notch mediated‐oxidative stress generation. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 241 (113752). [PMID:35709675] |
11. Ruofan Wei, Rong Wang, Yong Li, Moyi Yue, Wanlong Ding. (2022) Identification, biological characteristics and fungicide sensitivity of Colletotrichum species that cause anthracnose on Anemarrhena asphodeloides in China. JOURNAL OF PHYTOPATHOLOGY, 170 (6): (373-381). [PMID:] |
12. Liu Yang, Xu Xinxin, Liu Liqiang, Xu Liguang, Kuang Hua, Xu Chuanlai. (2022) Gold-based lateral-flow strip for the detection of penconazole in watermelon and cucumber samples. Food Quality and Safety, 6 [PMID:] |
13. Li Haocong, Li Yong, Wang Wenfeng, Wan Qun, Yu Xiangyang, Sun Wenjing. (2022) Uptake, translocation, and subcellular distribution of three triazole pesticides in rice. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 29 (17): (25581-25590). [PMID:34850341] |
14. Jingjie Yang, Hongwei Sun, Yucan Liu, Xiaohan Wang, Kamran Valizadeh. (2021) The sorption of Tebuconazole and Linuron from an Aqueous Environment with a Modified Sludge-Based Biochar: Effect, Mechanisms, and Its Persistent Free Radicals Study. Journal of Chemistry, 2021 (2912054). [PMID:] |
15. Xicheng Xie, Lingyun Li, Lumei Wang, Chaoqiang Pan, Dongwei Zhang, Guoqing Shen, Xicheng Xie, Lingyun Li, Lumei Wang, Chaoqiang Pan, Dongwei Zhang, Guoqing Shen. (2021) Colourimetric Detection of Tebuconazole in Aqueous Solution Based on an Unmodified Aptamer and the Aggregation of Gold Nanoparticles. AUSTRALIAN JOURNAL OF CHEMISTRY, 74 (12): (838-846). [PMID:] |
16. Xingtao Bao, Rui Yang, Shilong Jiang, Jinping Zhao, Delu Wang, Dongxue Li, Xian Wu, Baoan Song, Zhuo Chen. (2021) A Novel Sulfone Derivative Controls Lasiodiplodia theobromae in Tea Leaf Spot by Reducing the Ergosterol Content. MOLECULAR PLANT-MICROBE INTERACTIONS, [PMID:33822647] |
17. Suling Zhang, Ziluo Hua, Hongting Zhao, Weixuan Yao, Yuanzhao Wu, Defeng Fu, Jiancong Sun. (2021) Defective Zr-based metal–organic frameworks as sorbent for the determination of fungicides in environmental water samples by rapid dispersive micro-solid-phase extraction coupled to liquid chromatography/mass spectrometry. JOURNAL OF SEPARATION SCIENCE, 44 (10): (2113-2120). [PMID:33721403] |
18. Qing Zhihe, Li Yacheng, Li Younan, Luo Guoyan, Hu Jinlei, Zou Zhen, Lei Yanli, Liu Juewen, Yang Ronghua. (2020) Thiol-suppressed I2-etching of AuNRs: acetylcholinesterase-mediated colorimetric detection of organophosphorus pesticides. MICROCHIMICA ACTA, 187 (9): (1-9). [PMID:32803418] |
19. Lili Kong, Meizhen Huang, Jie Chen, Mengshi Lin. (2020) Fabrication of sensitive silver-decorated cotton swabs for SERS quantitative detection of mixed pesticide residues in bitter gourds. NEW JOURNAL OF CHEMISTRY, 44 (29): (12779-12784). [PMID:] |
20. Lin Li, Xiao-ting Yuan, Zhi-guo Shi, Lan-ying Xu. (2020) Chiral stationary phase based on cellulose derivative coated polymer microspheres and its separation performance. JOURNAL OF CHROMATOGRAPHY A, 1623 (461154). [PMID:32505273] |
21. Cheng Fuliang, Liao Xiaoning, Huang Zhiwen, Xu Liting, Zhou Ying, Zhang Xue. (2020) Highly Sensitive Detection of Thiabendazole Residues in Food Samples Based on Multiwall Carbon Nanotubes Decorated Two-Dimensional Layered Molybdenum Disulfide. Food Analytical Methods, 13 (3): (811-822). [PMID:] |
22. Li Younan, Luo Guoyan, Qing Zhihe, Li Xiaoxuan, Zou Zhen, Yang Ronghua. (2019) Colorimetric aminotriazole assay based on catalase deactivation-dependent longitudinal etching of gold nanorods. MICROCHIMICA ACTA, 186 (8): (1-7). [PMID:31338677] |
23. Weixuan Yao, Zhefeng Fan, Suling Zhang. (2019) Preparation of metal-organic framework UiO-66-incorporated polymer monolith for the extraction of trace levels of fungicides in environmental water and soil samples. JOURNAL OF SEPARATION SCIENCE, 42 (16): (2679-2686). [PMID:31177628] |
24. Guohuan Liang, Xiaojing Guo, Xuecai Tan, Shufen Mai, Zuanguang Chen, Haiyun Zhai. (2019) Molecularly imprinted monolithic column based on functionalized β-cyclodextrin and multi-walled carbon nanotubes for selective recognition of benzimidazole residues in citrus samples. MICROCHEMICAL JOURNAL, 146 (1285). [PMID:] |
25. Qiaomei Sun, Zili Suo, Hongyu Pu, Peixiao Tang, Na Gan, Ruixue Gan, Yuanming Zhai, Xiaohui Ding, Hui Li. (2018) Studies of the binding properties of the food preservative thiabendazole to DNA by computer simulations and NMR relaxation. RSC Advances, 8 (36): (20295-20303). [PMID:35541658] |
26. Yang Jiale, Fan Chen, Kong Dandan, Tang Gang, Zhang Wenbing, Dong Hongqiang, Liang You, Wang Deng, Cao Yongsong. (2018) Synthesis and application of imidazolium-based ionic liquids as extraction solvent for pretreatment of triazole fungicides in water samples. ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 410 (6): (1647-1656). [PMID:29294183] |
27. Xiao-jing Mao, Jing Li, Dan Liu, Ting Qiao, Liyun Ma, Xiao Sun, Li Xu, Zhi-guo Shi. (2018) Flow-through silica: A potential matrix for fast chromatographic enantioseparation with high enantioselectivity. TALANTA, 178 (583). [PMID:29136866] |
28. Xiaofei Han,Jia Chen,Zhan Li,Kaijun Quan,Hongdeng Qiu. (2020-09-07) Magnetic solid-phase extraction of triazole fungicides based on magnetic porous carbon prepared by combustion combined with solvothermal method.. Analytica chimica acta, 1129 (85-97). [PMID:32891394] |