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鹽酸四環(huán)素

    分析標準品,HPLC≥96%

Tetracycline HCl

源葉
B25579
64-75-5
C22H24N2O8·HCl
480.9
MFCD00078142
四環(huán)素鹽酸鹽
品牌 貨號 產(chǎn)品規(guī)格 價格(RMB) 庫存(上海) 北京 武漢 南京 購買數(shù)量
源葉 B25579-100mg 分析標準品,HPLC≥96% ¥150.00元 >10 2 5 3
源葉 B25579-1g 分析標準品,HPLC≥96% ¥650.00元 >10 - - -
產(chǎn)品介紹 參考文獻(28篇) 質(zhì)檢證書(COA) 摩爾濃度計算器 相關產(chǎn)品

產(chǎn)品介紹

 Tetracycline (hydrochloride) 是一種廣譜抗生素,對多種革蘭氏陽性和革蘭氏陰性細菌有抑制活性。

熔點: 223°C
沸點: 799.4 °C at 760 mmHg
比旋光度: -253 ° (C=0.5, 0.1mol/L HCl);-252 o (C=0.5, H2O)
外觀: 黃色結晶
溶解性: DMSO  :  62.5  mg/mL  (129.96  mM;  Need  ultrasonic)

H2O  :  50  mg/mL  (103.97  mM;  Need  ultrasonic)
敏感性: 對光及空氣敏感
儲存條件: -20℃
注意: 部分產(chǎn)品我司僅能提供部分信息,我司不保證所提供信息的權威性,僅供客戶參考交流研究之用。

參考文獻(28篇)

23. [IF=8.8] Zhengjie Chen et al."Ratiometric fluorescence sensor based on deep learning for rapid and user-friendly detection of tetracycline antibiotics."FOOD CHEMISTRY".2024 Aug;450:138961 22. [IF=4.6] Jie Long et al."Preparation of Oily Sludge-Derived Activated Carbon and Its Adsorption Performance for Tetracycline Hydrochloride."MOLECULES".2024 Jan;29(4):769 21. [IF=7] Mingxuan Wu et al."Montmorillonite-modified stabilizing SA/CMC gel spheres cross-linked by lanthanum for tetracycline hydrochloride removal."Journal of Water Process Engineering.2023 Dec;56:104563 20. [IF=5.8] Wu Minghui et al."Fe/sponge structure peanut shell carbon composite preparation for efficient Fenton oxidation crystal violet."ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH.10.1007/s11356-023-29828-4 19. [IF=4.1] Hubiao Zhao et al."Sulfur-doped carbon nitride with carbon vacancies: Enhanced photocatalytic activity for degradation of tetracycline hydrochloride."DIAMOND AND RELATED MATERIALS.2023 Nov;139:110239 18. [IF=3.754] Mengzhu Jiang et al."Novel PbMoO4 loaded N-biochar composites with enhanced adsorption-photocatalytic removal of tetracycline."OPTICAL MATERIALS.2023 Mar;137:113540 17. [IF=5.304] Xinxin Ji et al."One-step synthesis of N-doped carbon dots as sensitive “on–off-on” fluorescent sensor for tetracycline and Al3+ detection."MICROCHEMICAL JOURNAL.2023 Feb;185:108290 16. [IF=6.177] Ru Wang et al."Z-scheme 2D/0D ZnIn2S4/ZnO heterostructure for improved photocatalytic degradation of tetracycline: Energy band engineering and morphology modulation."Catalysis Science & Technology.2022 Nov;: 15. [IF=8.067] Yuanting Xu et al."“1+1>2”: Highly efficient removal of organic pollutants by composite nanofibrous membrane based on the synergistic effect of adsorption and photocatalysis."J Mater Sci Technol. 2022 Oct;124:76 14. [IF=5.316] Peiyu Cao et al."Constructing nano-heterojunction of MOFs with crystal regrowth for efficient degradation of tetracycline under visible light."J Alloy Compd. 2022 May;904:164061 13. [IF=2.478] Wang Lina et al."Palygorskite/g-C3N4 conjunction for visible-light-driven degradation of tetracycline hydrochloride."J Mater Sci-Mater El. 2019 Oct;30(19):18159-18167 12. [IF=3.209] Liuliu Jiang et al."In vitro and in?vivo evaluation of the antifungal activity of fluoxetine combined with antifungals against Candida albicans biofilms and oral candidiasis."Biofouling. 2020;36(5):537-548 11. [IF=6.291] Yilin Liu et al."Responses of Hydrocharis dubia (Bl.) Backer and Trapa bispinosa roxb. to tetracycline exposure."Ecotox Environ Safe. 2020 Oct;202:110890 10. [IF=7.086] Zhifen Chen et al."In-situ synthesis of biochar modified PbMoO4: An efficient visible light-driven photocatalyst for tetracycline removal."Chemosphere. 2021 Dec;284:131260 9. [IF=7.514] Yanan Cao et al."Rapid and selective extraction of norfloxacin from milk using magnetic molecular imprinting polymers nanoparticles."Food Chem. 2021 Aug;353:129464 8. [IF=7.514] Baoshan He et al."Aptamer-based thin film gold electrode modified with gold nanoparticles and carboxylated multi-walled carbon nanotubes for detecting oxytetracycline in chicken samples."Food Chem. 2019 Dec;300:125179 7. [IF=7.658] Hong Zhang et al."Uncariitannin, a polyphenolic polymer from Uncaria gambier, attenuates Staphylococcus aureus virulence through an MgrA-mediated regulation of α-hemolysin."Pharmacol Res. 2019 Sep;147:104328 6. 薛小旭,陳昌澤,顧國衛(wèi).聚丙烯酸改性磁性殼聚糖復合微球?qū)λ幬锘钚晕锏奈絒J].云南化工,2020,47(08):48-51. 5. 何茜,汪樂利,易川,吳桂萍.MoS_2@MIL-53(Fe)的制備及其可見光催化降解抗生素的研究[J].環(huán)境科學與技術,2020,43(08):13-19. 4. 王世豪,石明浩,劉蘇.順序暴露場景下四環(huán)素和砷對斑馬魚的聯(lián)合毒性效應[J].環(huán)境科學學報,2020,40(12):4590-4597. 3. 薛小旭,陳昌澤,顧國衛(wèi).聚丙烯酸改性磁性殼聚糖復合微球?qū)λ幬锘钚晕锏奈絒J].云南化工,2020,47(08):48-51. 2. 周睿, 桂榮潔, 張瑾,等. 鎘及四環(huán)素污染土壤耐性菌株的篩選及其根際促生能力研究. 1. 王玨 徐佳迎 程粟裕 趙鴿 蔣靜艷.光譜法和分子對接研究3種獸醫(yī)臨床常用抗菌藥對脲酶的影響及作用機制[J].南京農(nóng)業(yè)大學學報 2020 43(04):690-697.

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摩爾濃度計算器

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