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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S108476-250mg | 250mg | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $42.90 |
Synonyms | Streptozol | Sulfocidin | Sulphanilamide | Orgaseptine | p-Aminobenzenesulfonylamide | Tolder | Bacteramid | Ergaseptine | Proseptol | Rubiazol A | 4-Sulfamoylaniline | Prontosil White | Septolix | Strepsan | 1162 F | Albosal | Erysipan | p-Sulfamoylanili |
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Specifications & Purity | Moligand™, analytical standard |
Shipped In | Normal |
Grade | analytical standard, Moligand™ |
Action Type | INHIBITOR |
Mechanism of action | Bacterial dihydropteroate synthase inhibitor |
ALogP | -0.6 |
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Mechanism of Action | Action Type | target ID | Target Name | Target Type | Target Organism | Binding Site Name | References |
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IUPAC Name | 4-aminobenzenesulfonamide |
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INCHI | InChI=1S/C6H8N2O2S/c7-5-1-3-6(4-2-5)11(8,9)10/h1-4H,7H2,(H2,8,9,10) |
InChi Key | FDDDEECHVMSUSB-UHFFFAOYSA-N |
Canonical SMILES | C1=CC(=CC=C1N)S(=O)(=O)N |
Isomeric SMILES | C1=CC(=CC=C1N)S(=O)(=O)N |
WGK Germany | 3 |
RTECS | WO8400000 |
PubChem CID | 5333 |
UN Number | 1759 |
Packing Group | I |
Molecular Weight | 172.21 |
Beilstein | 511852 |
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 |
---|---|---|---|
E1803117 | Certificate of Analysis | Oct 16, 2023 | S108476 |
B2024029 | Certificate of Analysis | Sep 07, 2023 | S108476 |
C2005002 | Certificate of Analysis | Sep 06, 2023 | S108476 |
G2229401 | Certificate of Analysis | Aug 03, 2022 | S108476 |
Sensitivity | Moisture sensitive. |
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Melt Point(°C) | 164-166°C |
Signal | Warning |
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Hazard Statements | H315:Causes skin irritation H319:Causes serious eye irritation H335:May cause respiratory irritation |
Precautionary Statements | P261:Avoid breathing dust/fume/gas/mist/vapors/spray. P305+P351+P338:IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses if present and easy to do - continue rinsing. |
WGK Germany | 3 |
RTECS | WO8400000 |
Class | 8 |
Merck Index | 8925 |
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2. Xiaoli Qin, Siqi Lei, Kefan Yang, Weibo Xie, Jinqing Wang. (2024) Green synthetic sodium alginate-glycerol-MXene nanocomposite membrane with excellent flexibility and mineralization ability for guided bone regeneration. Journal of the Mechanical Behavior of Biomedical Materials, 150 (106336). [PMID:38169210] [10.1016/j.jmbbm.2023.106336] |
3. Jing Xiao, Jiayuan Tang, Jihong Chen, Lanlan Li, Shu Zhang, Xiaoli Xiong, Zhirong Zou. (2024) Rapid and selective detection of nitrite in ham sausage and water samples by a portable gas pressure meter. SENSORS AND ACTUATORS B-CHEMICAL, 400 (134914). [PMID:8225438] [10.1016/j.snb.2023.134914] |
4. Dongsheng Lu, Tiesen Liu, Jinyu Han, Jiankang Zhao, Hua Wang. (2023) Yolk-shell composite oxides with binuclear Co(II) sites toward low-overpotential nitrate reduction to ammonia. CHEMICAL ENGINEERING JOURNAL, 477 (18): (146896). [PMID:12582157] [10.1016/j.cej.2023.146896] |
5. Xia Zhan, Rui Ge, Teng Huo, Juan Lu, Jiding Li. (2023) Highly permeable PA@GO loose nanofiltration membranes enabled by hierarchical transport channels for efficient dye removal. CHEMICAL ENGINEERING JOURNAL, 476 (146831). [PMID:2757795] [10.1016/j.cej.2023.146831] |
6. Chao-Hai Gu, Song Wang, Ai-Yong Zhang, Chang Liu, Jun Jiang, Han-Qing Yu. (2023) Slow-release synthesis of Cu single-atom catalysts with the optimized geometric structure and density of state distribution for Fenton-like catalysis. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 120 (43): (e2311585120). [PMID:37844255] [10.1073/pnas.2311585120] |
7. Shuai Liu, Hao Qu, Lili Yao, Yu Mao, Ling Yan, Baolei Dong, Lei Zheng. (2023) Hydrogel microsphere-based portable sensor for colorimetric detection of nitrite in food with matrix influence-eliminated effect. SENSORS AND ACTUATORS B-CHEMICAL, 397 (3): (134707). [PMID:17934517] [10.1016/j.snb.2023.134707] |
8. Zuan Yu, Jiangwei Xie, Tianlun Ren, Hongjie Yu, Kai Deng, Ziqiang Wang, Hongjing Wang, Liang Wang, You Xu. (2023) Electrochemical Postmodification-Induced Surface Atom Rearrangement over Cu Nanodendrites for Enhanced Electrosynthesis of Ammonia from Nitrate. INORGANIC CHEMISTRY, 62 (39): (16228–16235). [PMID:37724563] [10.1021/acs.inorgchem.3c02886] |
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18. Mingzhu Wang, Zichao Yan, Mengjie Sun, Xiaoyue Feng, Wei Wang, Zhi Yuan. (2023) Cuprous Oxide-Based Dual Catalytic Nanostructures for Tumor Vascular Normalization-Enhanced Chemodynamic Therapy. ACS Applied Nano Materials, 6 (8): (6911–6919). [PMID:] [10.1021/acsanm.3c00627] |
19. Xiao Yang, Can Zhang, Qunfang Li, Jun-Hu Cheng. (2023) Physicochemical Properties of Plasma-Activated Water and Its Control Effects on the Quality of Strawberries. MOLECULES, 28 (6): (2677). [PMID:36985649] [10.3390/molecules28062677] |
20. Xinjie Tong, Ziwei Zhang, Zhongying Fang, Jinhan Guo, Yue Zheng, Xiaolong Liang, Rupeng Liu, Leting Zhang, Wei Chen. (2023) PdMoCu Trimetallenes for Nitrate Electroreduction to Ammonia. Journal of Physical Chemistry C, 127 (11): (5262–5270). [PMID:] [10.1021/acs.jpcc.3c00785] |
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22. Jiangfeng Yuan, Hanqing Yin, Xiaoxin Jin, Dan Zhao, Yuan Liu, Aijun Du, Xiaoqiang Liu, Anthony P. O’Mullane. (2023) A practical FeP nanoarrays electrocatalyst for efficient catalytic reduction of nitrite ions in wastewater to ammonia. APPLIED CATALYSIS B-ENVIRONMENTAL, 325 (122353). [PMID:] [10.1016/j.apcatb.2022.122353] |
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24. Weixiang Tao, Peifang Wang, Bin Hu, Xun Wang, Gang Zhou. (2023) Accelerating the reaction kinetics from nitrate to ammonia by anion substitution in NiCo-based catalysts. Journal of Environmental Chemical Engineering, 11 (109117). [PMID:] [10.1016/j.jece.2022.109117] |
25. Xiaoyu Guan, Juntao Guo, Hui Zhang, Shiyong Tao, Gilles Mailhot, Feng Wu, Jing Xu. (2022) Effect of Co-Existing Cations and Anions on the Adsorption of Antibiotics on Iron-Containing Minerals. MOLECULES, 27 (22): (8037). [PMID:36432145] [10.3390/molecules27228037] |
26. Sijin Zuo, Yinqiao Zhang, Ruixin Guo, Jianqiu Chen. (2022) Efficient Removal of Ammonia Nitrogen by an Electrochemical Process for Spent Caustic Wastewater Treatment. Catalysts, 12 (11): (1357). [PMID:] [10.3390/catal12111357] |
27. Honghong Lyu, Pin Li, Jingchun Tang, Weixin Zou, Pengfei Wang, Bin Gao, Lin Dong. (2023) Single-atom Mn anchored on N-doped graphene oxide for efficient adsorption-photocatalytic degradation of sulfanilamide in water: Electronic interaction and mineralization pathway. CHEMICAL ENGINEERING JOURNAL, 454 (140120). [PMID:] [10.1016/j.cej.2022.140120] |
28. Hao-Fei Sun, Yuan-Yuan Cui, Chang-Qing Zhen, Cheng-Xiong Yang. (2023) Monomer-mediated fabrication of microporous organic network@silica microsphere for reversed-phase/hydrophilic interaction mixed-mode chromatography. TALANTA, 251 (123763). [PMID:35932636] [10.1016/j.talanta.2022.123763] |
29. You Xu, Youwei Sheng, Mingzhen Wang, Tianlun Ren, Keke Shi, Ziqiang Wang, Xiaonian Li, Liang Wang, Hongjing Wang. (2022) Interface coupling induced built-in electric fields boost electrochemical nitrate reduction to ammonia over CuO@MnO2 core–shell hierarchical nanoarrays. Journal of Materials Chemistry A, 10 (32): (16883-16890). [PMID:] [10.1039/D2TA02006H] |
30. Zhiqin Deng, Jie Liang, Qian Liu, Chaoqun Ma, Lisi Xie, Luchao Yue, Yuchun Ren, Tingshuai Li, Yongsong Luo, Na Li, Bo Tang, Abdulmohsen Ali Alshehri, Imran Shakir, Philips O. Agboola, Shihai Yan, Baozhan Zheng, Juan Du, Qingquan Kong, Xuping Sun. (2022) High-efficiency ammonia electrosynthesis on self-supported Co2AlO4 nanoarray in neutral media by selective reduction of nitrate. CHEMICAL ENGINEERING JOURNAL, 435 (135104). [PMID:] [10.1016/j.cej.2022.135104] |
31. You Xu, Kaili Ren, Tianlun Ren, Mingzhen Wang, Ziqiang Wang, Xiaonian Li, Liang Wang, Hongjing Wang. (2022) Ultralow-content Pd in-situ incorporation mediated hierarchical defects in corner-etched Cu2O octahedra for enhanced electrocatalytic nitrate reduction to ammonia. APPLIED CATALYSIS B-ENVIRONMENTAL, 306 (121094). [PMID:] [10.1016/j.apcatb.2022.121094] |
32. Hongjing Wang, Qiqi Mao, Tianlun Ren, Tongqing Zhou, Kai Deng, Ziqiang Wang, Xiaonian Li, You Xu, Liang Wang. (2021) Synergism of Interfaces and Defects: Cu/Oxygen Vacancy-Rich Cu-Mn3O4 Heterostructured Ultrathin Nanosheet Arrays for Selective Nitrate Electroreduction to Ammonia. ACS Applied Materials & Interfaces, 13 (37): (44733–44741). [PMID:34499470] [10.1021/acsami.1c11249] |
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34. Chen Sun, Tong Chen, Qunxing Huang, Xiaoguang Duan, Mingxiu Zhan, Longjie Ji, Xiaodong Li, Jianhua Yan. (2021) Selective production of singlet oxygen from zinc-etching hierarchically porous biochar for sulfamethoxazole degradation. ENVIRONMENTAL POLLUTION, 290 (117991). [PMID:34428705] [10.1016/j.envpol.2021.117991] |
35. Liangmiao Luo, Yi Wang, Yihai Wang, Jingwen Xu, Xiangjiu He. (2021) Potential in vitro anti-neuroinflammatory sterols from mango fruits (Mangifera indica L.). Journal of Functional Foods, 84 (104576). [PMID:] [10.1016/j.jff.2021.104576] |
36. Yunbo Liu, Xuemei Zhang, Jinhua Deng, Yong Liu. (2021) A novel CNTs-Fe3O4 synthetized via a ball-milling strategy as efficient fenton-like catalyst for degradation of sulfonamides. CHEMOSPHERE, 277 (130305). [PMID:33773319] [10.1016/j.chemosphere.2021.130305] |
37. Murtaza Ali, Jun-Hu Cheng, Da-Wen Sun. (2021) Effect of plasma activated water and buffer solution on fungicide degradation from tomato (Solanum lycopersicum) fruit. FOOD CHEMISTRY, 350 (129195). [PMID:33636620] [10.1016/j.foodchem.2021.129195] |
38. Cui-Mei Liu, Hong-Yuan He, Lin Xu, Zhen-Dong Hua. (2020) New qualitative analysis strategy for illicit drugs using Raman spectroscopy and characteristic peaks method. Drug Testing and Analysis, 13 (3): (720-728). [PMID:33142047] [10.1002/dta.2963] |
39. Yuanyuan Peng, Wenhua Tong, Yi Xie, Wanrong Hu, Yonghong Li, Yongkui Zhang, Yabo Wang. (2021) Yeast biomass-induced Co2P/biochar composite for sulfonamide antibiotics degradation through peroxymonosulfate activation. ENVIRONMENTAL POLLUTION, 268 (115930). [PMID:33183869] [10.1016/j.envpol.2020.115930] |
40. Yuanhao Qiu, Zahra Batool, Rui Liu, Guoqing Sui, Bulei Sheng, Xinhua Zheng, Dan Xu. (2020) Characterization and immunological activity of polysaccharides from Potentilla chinensis. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 165 (683). [PMID:32961189] [10.1016/j.ijbiomac.2020.09.118] |
41. Qiushan Zhang, Jin Shao, Tong Zhao, Lei He, Huiping Ma, Linlin Jing. (2020) The Role of C-8 OH on the Antioxidant Activity of Norwogonin and Isowogonin. Natural Product Communications, [PMID:] [10.1177/1934578X20924887] |
42. Li Shuhuai, Ma Xionghui, Pang Chaohai, Tian Hai, Xu Zhi, Yang Yan, Lv Daizhu, Ge Huilin. (2019) Fluorometric aptasensor for cadmium(II) by using an aptamer-imprinted polymer as the recognition element. MICROCHIMICA ACTA, 186 (12): (1-7). [PMID:31754804] [10.1007/s00604-019-3886-7] |
43. Jianhua Wang, Lishen Zhang, Xiaochun Li, Xiaoliang Zhang, Hua-Zhong Yu. (2019) From kirigami to three-dimensional paper-based micro-analytical device: cut-and-paste fabrication and mobile app quantitation. RSC Advances, 9 (40): (23267-23275). [PMID:35514509] [10.1039/C9RA04014E] |
44. Zhen Li, Mei Li, Cong Wang, Xinhui Zhou, Jianfeng Li, Daoliang Li. (2019) Highly sensitive and selective method for detection of trace amounts of nitrite in aquaculture water by SERRS coupled with diazo reaction. SENSORS AND ACTUATORS B-CHEMICAL, 297 (126757). [PMID:] [10.1016/j.snb.2019.126757] |
45. Yunlei Zhou, Fei Li, Hanwen Wu, Yan Chen, Huanshun Yin, Shiyun Ai, Jun Wang. (2019) Electrochemical aptasensing strategy for kanamycin detection based on target-triggered single-strand DNA adsorption on MoS2 nanosheets and enzymatic signal amplification. SENSORS AND ACTUATORS B-CHEMICAL, 296 (126664). [PMID:] [10.1016/j.snb.2019.126664] |
46. Guifen Zhu, Guohao Cheng, Tong Lu, Zhiguo Cao, Lifang Wang, Qianjin Li, Jing Fan. (2019) An ionic liquid functionalized polymer for simultaneous removal of four phenolic pollutants in real environmental samples. JOURNAL OF HAZARDOUS MATERIALS, 373 (347). [PMID:30928677] [10.1016/j.jhazmat.2019.03.101] |
47. He Baoshan, Li Ming. (2018) A novel electrochemical aptasensor based on gold electrode decorated Ag@Au core-shell nanoparticles for sulfamethazine determination. ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 410 (29): (7671-7678). [PMID:30370474] [10.1007/s00216-018-1381-3] |
48. Y. Shi, H. L. Liu, X. Q. Zhu, J. M. Zhu, Y. F. Zuo, Y. Yang, F. H. Jiang, C. J. Sun, W. H. Zhao, X. T. Han. (2018) Optofluidic differential colorimetry for rapid nitrite determination. LAB ON A CHIP, 18 (19): (2994-3002). [PMID:30128458] [10.1039/C8LC00690C] |
49. Pengjun Li, Kairong Lin, Zhanqiang Fang, Wenfeng Zhang. (2020) Degradation of nitrate and secondary pollution in drinking water by S-NZVI prepared from steel pickling waste liquor. Journal of Hydro-environment Research, 28 (15). [PMID:] [10.1016/j.jher.2018.01.005] |
50. Zhang Xiu-Xiu, Song Yi-Zhen, Fang Fang, Wu Zhi-Yong. (2018) Sensitive paper-based analytical device for fast colorimetric detection of nitrite with smartphone. ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 410 (11): (2665-2669). [PMID:29556736] [10.1007/s00216-018-0965-2] |
51. Qisen Xiang, Xiufang Liu, Junguang Li, Shengnan Liu, Hua Zhang, Yanhong Bai. (2018) Effects of dielectric barrier discharge plasma on the inactivation of Zygosaccharomyces rouxii and quality of apple juice. FOOD CHEMISTRY, 254 (201). [PMID:29548443] [10.1016/j.foodchem.2018.02.008] |
52. Cai Tianpei, Zhang Haijuan, Rahman A. F. M. Mustafizur, Shi Yan-Ping, Qiu Hongdeng. (2017) Silica grafted with silanized carbon dots as a nano-on-micro packing material with enhanced hydrophilic selectivity. MICROCHIMICA ACTA, 184 (8): (2629-2636). [PMID:] [10.1007/s00604-017-2277-1] |
53. Jing Linlin, Ma Huiping, Fan Pengcheng, Jia Zhengping. (2017) Synthesis and Antioxidant Properties of 5,6,7,8-Tetrahydroxyflavone. CHEMISTRY OF NATURAL COMPOUNDS, 53 (2): (248-253). [PMID:] [10.1007/s10600-017-1963-x] |
54. Pengjun Li, Kairong Lin, Zhanqiang Fang, Kangming Wang. (2017) Enhanced nitrate removal by novel bimetallic Fe/Ni nanoparticles supported on biochar. Journal of Cleaner Production, 151 (21). [PMID:] [10.1016/j.jclepro.2017.03.042] |
55. Cai Long-Fei, Zhong Ming-Hua, Chen Wen-Yin, Xu Chun-Xiu, Wu Yun-Ying. (2015) Fabrication of paper-based analytical device by silanisation of filter cellulose using alkyltrimethoxysilane coupled with UV radiation. CHEMICAL PAPERS, 69 (2): (262-268). [PMID:] [10.1515/chempap-2015-0002] |
56. Houmei Liu, Jia Chen, Zhan Li, Makoto Takafuji, Hirotaka Ihara, Hongdeng Qiu. (2017) A new route for synthesis of N-methylimidazolium-grafted silica stationary phase and reevaluation in hydrophilic interaction liquid chromatography. TALANTA, 164 (137). [PMID:28107907] [10.1016/j.talanta.2016.11.037] |
57. Tianwei Lv, Hongyuan Yan, Jiankun Cao, Shiru Liang. (2015) Hydrophilic Molecularly Imprinted Resorcinol–Formaldehyde–Melamine Resin Prepared in Water with Excellent Molecular Recognition in Aqueous Matrices. ANALYTICAL CHEMISTRY, 87 (21): (11084–11091). [PMID:26441379] [10.1021/acs.analchem.5b03253] |
58. Jiangsheng Xu, Fang Zeng, Hao Wu, Shuizhu Wu. (2015) A mitochondrial-targeting and NO-based anticancer nanosystem with enhanced photo-controllability and low dark-toxicity. Journal of Materials Chemistry B, 3 (24): (4904-4912). [PMID:32262679] [10.1039/C5TB00522A] |
59. Dihui Huang, Qin Yang, Shanxia Jin, Qianchun Deng, Ping Zhou. (2014) Self-assembly of cellulose nanoparticles as electrolyte additive for capillary electrophoresis separation. JOURNAL OF CHROMATOGRAPHY A, 1367 (148). [PMID:25262028] [10.1016/j.chroma.2014.09.032] |
60. Jiangsheng Xu, Fang Zeng, Hao Wu, Caiping Hu, Changmin Yu, Shuizhu Wu. (2014) Preparation of a Mitochondria-targeted and NO-Releasing Nanoplatform and its Enhanced Pro-Apoptotic Effect on Cancer Cells. Small, 10 (18): (3750-3760). [PMID:24833029] [10.1002/smll.201400437] |
61. Yan-Yan Fu,Cheng-Xiong Yang,Xiu-Ping Yan. (2012-04-07) Control of the coordination status of the open metal sites in metal-organic frameworks for high performance separation of polar compounds.. Langmuir : the ACS journal of surfaces and colloids, 28 ((17)): (6794-6802). [PMID:22480159] |
62. Zhang Rong, Li Chuan, Cui Huilin, Wang Yanbo, Zhang Shaoce, Li Pei, Hou Yue, Guo Ying, Liang Guojin, Huang Zhaodong, Peng Chao, Zhi Chunyi. (2023) Electrochemical nitrate reduction in acid enables high-efficiency ammonia synthesis and high-voltage pollutes-based fuel cells. Nature Communications, 14 (1): (1-11). [PMID:38052852] [10.1038/s41467-023-43897-6] |
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33. Jie Guan, Ying-zhuo Shen, Yun Shu, Dangqin Jin, Qin Xu, Xiao-Ya Hu. (2021) Internal–External Stabilization Strategies Enable Ultrastable and Highly Luminescent CsPbBr3 Perovskite Nanocrystals for Aqueous Fe3+ Detection and Information Encryption. Advanced Materials Interfaces, 8 (19): (2100588). [PMID:] [10.1002/admi.202100588] |
34. Chen Sun, Tong Chen, Qunxing Huang, Xiaoguang Duan, Mingxiu Zhan, Longjie Ji, Xiaodong Li, Jianhua Yan. (2021) Selective production of singlet oxygen from zinc-etching hierarchically porous biochar for sulfamethoxazole degradation. ENVIRONMENTAL POLLUTION, 290 (117991). [PMID:34428705] [10.1016/j.envpol.2021.117991] |
35. Liangmiao Luo, Yi Wang, Yihai Wang, Jingwen Xu, Xiangjiu He. (2021) Potential in vitro anti-neuroinflammatory sterols from mango fruits (Mangifera indica L.). Journal of Functional Foods, 84 (104576). [PMID:] [10.1016/j.jff.2021.104576] |
36. Yunbo Liu, Xuemei Zhang, Jinhua Deng, Yong Liu. (2021) A novel CNTs-Fe3O4 synthetized via a ball-milling strategy as efficient fenton-like catalyst for degradation of sulfonamides. CHEMOSPHERE, 277 (130305). [PMID:33773319] [10.1016/j.chemosphere.2021.130305] |
37. Murtaza Ali, Jun-Hu Cheng, Da-Wen Sun. (2021) Effect of plasma activated water and buffer solution on fungicide degradation from tomato (Solanum lycopersicum) fruit. FOOD CHEMISTRY, 350 (129195). [PMID:33636620] [10.1016/j.foodchem.2021.129195] |
38. Cui-Mei Liu, Hong-Yuan He, Lin Xu, Zhen-Dong Hua. (2020) New qualitative analysis strategy for illicit drugs using Raman spectroscopy and characteristic peaks method. Drug Testing and Analysis, 13 (3): (720-728). [PMID:33142047] [10.1002/dta.2963] |
39. Yuanyuan Peng, Wenhua Tong, Yi Xie, Wanrong Hu, Yonghong Li, Yongkui Zhang, Yabo Wang. (2021) Yeast biomass-induced Co2P/biochar composite for sulfonamide antibiotics degradation through peroxymonosulfate activation. ENVIRONMENTAL POLLUTION, 268 (115930). [PMID:33183869] [10.1016/j.envpol.2020.115930] |
40. Yuanhao Qiu, Zahra Batool, Rui Liu, Guoqing Sui, Bulei Sheng, Xinhua Zheng, Dan Xu. (2020) Characterization and immunological activity of polysaccharides from Potentilla chinensis. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 165 (683). [PMID:32961189] [10.1016/j.ijbiomac.2020.09.118] |
41. Qiushan Zhang, Jin Shao, Tong Zhao, Lei He, Huiping Ma, Linlin Jing. (2020) The Role of C-8 OH on the Antioxidant Activity of Norwogonin and Isowogonin. Natural Product Communications, [PMID:] [10.1177/1934578X20924887] |
42. Li Shuhuai, Ma Xionghui, Pang Chaohai, Tian Hai, Xu Zhi, Yang Yan, Lv Daizhu, Ge Huilin. (2019) Fluorometric aptasensor for cadmium(II) by using an aptamer-imprinted polymer as the recognition element. MICROCHIMICA ACTA, 186 (12): (1-7). [PMID:31754804] [10.1007/s00604-019-3886-7] |
43. Jianhua Wang, Lishen Zhang, Xiaochun Li, Xiaoliang Zhang, Hua-Zhong Yu. (2019) From kirigami to three-dimensional paper-based micro-analytical device: cut-and-paste fabrication and mobile app quantitation. RSC Advances, 9 (40): (23267-23275). [PMID:35514509] [10.1039/C9RA04014E] |
44. Zhen Li, Mei Li, Cong Wang, Xinhui Zhou, Jianfeng Li, Daoliang Li. (2019) Highly sensitive and selective method for detection of trace amounts of nitrite in aquaculture water by SERRS coupled with diazo reaction. SENSORS AND ACTUATORS B-CHEMICAL, 297 (126757). [PMID:] [10.1016/j.snb.2019.126757] |
45. Yunlei Zhou, Fei Li, Hanwen Wu, Yan Chen, Huanshun Yin, Shiyun Ai, Jun Wang. (2019) Electrochemical aptasensing strategy for kanamycin detection based on target-triggered single-strand DNA adsorption on MoS2 nanosheets and enzymatic signal amplification. SENSORS AND ACTUATORS B-CHEMICAL, 296 (126664). [PMID:] [10.1016/j.snb.2019.126664] |
46. Guifen Zhu, Guohao Cheng, Tong Lu, Zhiguo Cao, Lifang Wang, Qianjin Li, Jing Fan. (2019) An ionic liquid functionalized polymer for simultaneous removal of four phenolic pollutants in real environmental samples. JOURNAL OF HAZARDOUS MATERIALS, 373 (347). [PMID:30928677] [10.1016/j.jhazmat.2019.03.101] |
47. He Baoshan, Li Ming. (2018) A novel electrochemical aptasensor based on gold electrode decorated Ag@Au core-shell nanoparticles for sulfamethazine determination. ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 410 (29): (7671-7678). [PMID:30370474] [10.1007/s00216-018-1381-3] |
48. Y. Shi, H. L. Liu, X. Q. Zhu, J. M. Zhu, Y. F. Zuo, Y. Yang, F. H. Jiang, C. J. Sun, W. H. Zhao, X. T. Han. (2018) Optofluidic differential colorimetry for rapid nitrite determination. LAB ON A CHIP, 18 (19): (2994-3002). [PMID:30128458] [10.1039/C8LC00690C] |
49. Pengjun Li, Kairong Lin, Zhanqiang Fang, Wenfeng Zhang. (2020) Degradation of nitrate and secondary pollution in drinking water by S-NZVI prepared from steel pickling waste liquor. Journal of Hydro-environment Research, 28 (15). [PMID:] [10.1016/j.jher.2018.01.005] |
50. Zhang Xiu-Xiu, Song Yi-Zhen, Fang Fang, Wu Zhi-Yong. (2018) Sensitive paper-based analytical device for fast colorimetric detection of nitrite with smartphone. ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 410 (11): (2665-2669). [PMID:29556736] [10.1007/s00216-018-0965-2] |
51. Qisen Xiang, Xiufang Liu, Junguang Li, Shengnan Liu, Hua Zhang, Yanhong Bai. (2018) Effects of dielectric barrier discharge plasma on the inactivation of Zygosaccharomyces rouxii and quality of apple juice. FOOD CHEMISTRY, 254 (201). [PMID:29548443] [10.1016/j.foodchem.2018.02.008] |
52. Cai Tianpei, Zhang Haijuan, Rahman A. F. M. Mustafizur, Shi Yan-Ping, Qiu Hongdeng. (2017) Silica grafted with silanized carbon dots as a nano-on-micro packing material with enhanced hydrophilic selectivity. MICROCHIMICA ACTA, 184 (8): (2629-2636). [PMID:] [10.1007/s00604-017-2277-1] |
53. Jing Linlin, Ma Huiping, Fan Pengcheng, Jia Zhengping. (2017) Synthesis and Antioxidant Properties of 5,6,7,8-Tetrahydroxyflavone. CHEMISTRY OF NATURAL COMPOUNDS, 53 (2): (248-253). [PMID:] [10.1007/s10600-017-1963-x] |
54. Pengjun Li, Kairong Lin, Zhanqiang Fang, Kangming Wang. (2017) Enhanced nitrate removal by novel bimetallic Fe/Ni nanoparticles supported on biochar. Journal of Cleaner Production, 151 (21). [PMID:] [10.1016/j.jclepro.2017.03.042] |
55. Cai Long-Fei, Zhong Ming-Hua, Chen Wen-Yin, Xu Chun-Xiu, Wu Yun-Ying. (2015) Fabrication of paper-based analytical device by silanisation of filter cellulose using alkyltrimethoxysilane coupled with UV radiation. CHEMICAL PAPERS, 69 (2): (262-268). [PMID:] [10.1515/chempap-2015-0002] |
56. Houmei Liu, Jia Chen, Zhan Li, Makoto Takafuji, Hirotaka Ihara, Hongdeng Qiu. (2017) A new route for synthesis of N-methylimidazolium-grafted silica stationary phase and reevaluation in hydrophilic interaction liquid chromatography. TALANTA, 164 (137). [PMID:28107907] [10.1016/j.talanta.2016.11.037] |
57. Tianwei Lv, Hongyuan Yan, Jiankun Cao, Shiru Liang. (2015) Hydrophilic Molecularly Imprinted Resorcinol–Formaldehyde–Melamine Resin Prepared in Water with Excellent Molecular Recognition in Aqueous Matrices. ANALYTICAL CHEMISTRY, 87 (21): (11084–11091). [PMID:26441379] [10.1021/acs.analchem.5b03253] |
58. Jiangsheng Xu, Fang Zeng, Hao Wu, Shuizhu Wu. (2015) A mitochondrial-targeting and NO-based anticancer nanosystem with enhanced photo-controllability and low dark-toxicity. Journal of Materials Chemistry B, 3 (24): (4904-4912). [PMID:32262679] [10.1039/C5TB00522A] |
59. Dihui Huang, Qin Yang, Shanxia Jin, Qianchun Deng, Ping Zhou. (2014) Self-assembly of cellulose nanoparticles as electrolyte additive for capillary electrophoresis separation. JOURNAL OF CHROMATOGRAPHY A, 1367 (148). [PMID:25262028] [10.1016/j.chroma.2014.09.032] |
60. Jiangsheng Xu, Fang Zeng, Hao Wu, Caiping Hu, Changmin Yu, Shuizhu Wu. (2014) Preparation of a Mitochondria-targeted and NO-Releasing Nanoplatform and its Enhanced Pro-Apoptotic Effect on Cancer Cells. Small, 10 (18): (3750-3760). [PMID:24833029] [10.1002/smll.201400437] |
61. Yan-Yan Fu,Cheng-Xiong Yang,Xiu-Ping Yan. (2012-04-07) Control of the coordination status of the open metal sites in metal-organic frameworks for high performance separation of polar compounds.. Langmuir : the ACS journal of surfaces and colloids, 28 ((17)): (6794-6802). [PMID:22480159] |
62. Zhang Rong, Li Chuan, Cui Huilin, Wang Yanbo, Zhang Shaoce, Li Pei, Hou Yue, Guo Ying, Liang Guojin, Huang Zhaodong, Peng Chao, Zhi Chunyi. (2023) Electrochemical nitrate reduction in acid enables high-efficiency ammonia synthesis and high-voltage pollutes-based fuel cells. Nature Communications, 14 (1): (1-11). [PMID:38052852] [10.1038/s41467-023-43897-6] |