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尿酸

    
分析標(biāo)準(zhǔn)品,HPLC≥98%

Uric acid

源葉
B25666 一鍵復(fù)制產(chǎn)品信息
69-93-2
C5H4N4O3
168.1
MFCD00005712
2,6,8-三羥基嘌呤
貨號(hào) 規(guī)格 價(jià)格 上海 北京 武漢 南京 購(gòu)買數(shù)量
B25666-20mg 分析標(biāo)準(zhǔn)品,HPLC≥98% ¥400.00 >10 1 2 1
B25666-100mg 分析標(biāo)準(zhǔn)品,HPLC≥98% ¥1400.00 >10 - - -
產(chǎn)品介紹 參考文獻(xiàn)(46篇) 質(zhì)檢證書(COA) 摩爾濃度計(jì)算器 相關(guān)產(chǎn)品

產(chǎn)品介紹

熔點(diǎn): >300°C
沸點(diǎn): 863°C at 760 mmHg
溶解性: 1M  NaOH:25mg/ml
儲(chǔ)存條件: 2-8℃
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(quán)威性,僅供客戶參考交流研究之用。

參考文獻(xiàn)(46篇)

41. [IF=2.7] Juan Chai et al."Facile synthesis of UOx-doped Cu2O@HP-HKUST-1 for sensitive colorimetric detection of uric acid."NEW JOURNAL OF CHEMISTRY.2025 Mar;: 40. [IF=8] Xu Xiaochen et al."Structure-based principles underlying ligand recognition of xanthine-II riboswitch."Science China-Life Sciences.2025 Apr;:1-12 39. [IF=4.9] Cunshan Zhang et al."Near-infrared emissive mechanism of carbon dots induced by amino protonation and application for acid phosphatase determination, inhibitor screening and assay."MICROCHEMICAL JOURNAL.2025 Jun;213:113722 38. [IF=6.5] Mengjun Wang et al."High-performance colorimetric sensor based on PtRu bimetallic nanozyme for xanthine analysis."Food Chemistry-X.2024 Oct;23:101588 37. [IF=4.8] Liangyun Yu et al."2-(Perfluorooctyl) ethyl acrylate functionalized pervoskite: A selective and stable photoelectrochemical platform for ultrasensitive detection of cholesterol."MICROCHEMICAL JOURNAL".2024 Jul;202:110792 36. [IF=1.2] Xue-Tao ZHANG et al."Smart Sweat Glucose Detection System Based on Organic Electrochemical Transistor and Near Field Communication."CHINESE JOURNAL OF ANALYTICAL CHEMISTRY.2024 Jan;:100356 35. [IF=5.4] Xuechen Li et al."A System for Discovering Novel Uricosurics Targeting Urate Transporter 1 Based on In Vitro and In Vivo Modeling."Pharmaceutics.2024 Feb;16(2):172 34. [IF=3.1] Shuanglu Ying et al."Controllable design of macroporous PBA as an efficient non-enzymatic electrochemical sensor for glucose detection."CRYSTENGCOMM.2023 Aug;: 33. [IF=4.6] Liyun Ding et al."Dual-mode cholesterol sensor based on gold nanorods and carbon quantum dots."MATERIALS CHEMISTRY AND PHYSICS.2023 Nov;309:128336 32. [IF=6.1] Anran Zheng et al."A wide-range UAC sensor for the classification of hyperuricemia in spot samples."TALANTA.2024 Jan;266:125102 31. [IF=8.2] Ye Lou et al."Ferulic acid ameliorates hyperuricemia by regulating xanthine oxidase."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Aug;:126542 30. [IF=5] Xiaoyun Zhou et al."Melamine-Based Nanocomposites for Selective Dopamine and Uric Acid Sensing."ACS Applied Polymer Materials.2023;XXXX(XXX):XXX-XXX 29. [IF=12.6] Liangyun Yu et al."Molecularly imprinted ultrasensitive cholesterol photoelectrochemical sensor based on perfluorinated organics functionalization and hollow carbon spheres anchored organic-inorganic perovskite."BIOSENSORS & BIOELECTRONICS.2023 Oct;237:11 28. [IF=5.581] Zhi-Xu Zhang et al."Research on the Efficacy of Ganpu Vine Tea in Inhibiting Uric Acid Production."Metabolites.2023 Jun;13(6):704 27. [IF=4.831] Yue Wu et al."Highly selective detection of epinephrine by a “turn-off” fluorescent sensor based on N-doped carbon quantum dots."SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY.2023 Oct;298:122760 26. [IF=2.551] Jiang Wang et al."Special pore-space-partition CoFePBA hollow framework realizing high-performance glucose sensing."EUROPEAN JOURNAL OF INORGANIC CHEMISTRY.2023 Mar;:e202200707 25. [IF=7.419] Li Dong et al."In vivo anti-hyperuricemia and anti-gouty arthritis effects of the ethanol extract from Amomumvillosum Lour.."BIOMEDICINE & PHARMACOTHERAPY.2023 May;161:114532 24. [IF=4.831] Yu Xiao et al."Detecting uric acid base on the dual inner filter effect using BSA@Au nanoclusters as both peroxidase mimics and fluorescent reporters."SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY.2023 May;293:122504 23. [IF=3.118] Ruixue Li et al."Two new Ag-MOFs: Synthesis, structure, electrocatalytic hydrogen evolution and H2O2 electrochemical sensing."INORGANICA CHIMICA ACTA.2023 Jan;544:121208 22. [IF=4.142] Zhang Wei et al."Ratiometric fluorescence and colorimetric dual-mode sensing platform based on carbon dots for detecting copper(II) ions and D-penicillamine."Anal Bioanal Chem. 2022 Feb;414(4):1651-1662 21. [IF=4.35] Manli Wu et al.Simultaneous Determination of Purines and Uric Acid in Chinese Chicken Broth Using TFA/FA Hydrolysis Coupled with HPLC-VWD.Foods. 2021 Nov;10(11):2814 20. [IF=4.641] Fei Qu et al."Aggregation-induced emission of lead halide perovskites modulated by dispersed/aggregated gold nanoparticles for application in the detection of dopamine."Mater Res Bull. 2021 Oct;142:111405 19. [IF=5.279] Li-Ming Wang et al."1H NMR and UHPLC/Q-Orbitrap-MS-Based Metabolomics Combined with 16S rRNA Gut Microbiota Analysis Revealed the Potential Regulation Mechanism of Nuciferine in Hyperuricemia Rats."J Agr Food Chem. 2020;68(47):14059–14070 18. [IF=6.057] Lu Chen et al."A highly-specific photoelectrochemical platform based on carbon nanodots and polymers functionalized organic-inorganic perovskite for cholesterol sensing."Talanta. 2021 Apr;225:122050 17. [IF=6.331] Xiao Liang et al."Urate oxidase loaded in PCN-222(Fe) with peroxidase-like activity for colorimetric detection of uric acid."J Mater Chem B. 2021 Sep;9(34):6811-6817 16. [IF=7.46] Xiaoyu Yang et al."Molecularly imprinted polymers and PEG double engineered perovskite: an efficient platform for constructing aqueous solution feasible photoelectrochemical sensor."Sensor Actuat B-Chem. 2020 Feb;304:127321 15. [IF=5.833] Chen Dandan et al."Electrochemical determination of dopamine using a glassy carbon electrode modified with a nanocomposite consisting of nanoporous platinum-yttrium and graphene."Microchim Acta. 2018 Feb;185(2):1-7 14. [IF=5.833] Mei Ling et al."Non-enzymatic sensing of glucose and hydrogen peroxide using a glassy carbon electrode modified with a nanocomposite consisting of nanoporous copper, carbon black and nafion."Microchim Acta. 2016 Apr;183(4):1359-1365 13. [IF=6.057] Xiao-yan Wang et al."A novel ratiometric fluorescent probe for the detection of uric acid in human blood based on H2O2-mediated fluorescence quenching of gold/silver nanoclusters."Talanta. 2019 Jan;191:46 12. Yun, Yu, et al. "Excretory function of intestinal tract enhanced in kidney impaired rats caused by adenine." The Scientific World Journal 2016 (2016).https://doi.org/10.1155/2016/2695718 11. Xiaoyu Yang, Lu Chen, Xiuxiu Xiong, Yun Shu, Dangqin Jin, Yang Zang, Wei Wang, Qin Xu, Xiao-Ya Hu, Molecularly imprinted polymers and PEG double engineered perovskite: an efficient platform for constructing aqueous solution feasible photoelectrochemical se 10. Wang, Li-Ming, et al. "1H NMR and UHPLC/Q-Orbitrap-MS-Based metabolomics combined with 16S rRNA gut microbiota analysis revealed the potential regulation mechanism of nuciferine in hyperuricemia rats." Journal of Agricultural and Food Chemistry 68.47 (2020 9. Wang, X. Y. , et al. "A novel ratiometric fluorescent probe for the detection of uric acid in human blood based on H 2 O 2 -mediated fluorescence quenching of gold/silver nanoclusters." Talanta 191(2019):46-53. 8. 陳尚龍, 陳安徽, 劉輝,等. 應(yīng)用消化系統(tǒng)全仿生模型分析酸奶發(fā)酵對(duì)鈣形態(tài)的影響[J]. 農(nóng)業(yè)工程學(xué)報(bào), 2018, v.34;No.332(05):297-302. 7. 洪澤翰, 吳婉儀, 李璐,等. 不同大分子乳化劑構(gòu)建番茄紅素納米乳液的體外消化規(guī)律比較[J]. 食品科學(xué), 2019, 40(10):9-15. 6. 陳尚龍, 劉恩岐, 陳安徽,等. 應(yīng)用體外全仿生模型初步分析2種富硒產(chǎn)品中硒形態(tài)及生物可給性[J]. 食品科學(xué), 2018, 039(004):225-232. 5. 梁玲玲 康紅. 兩種鈾配合物對(duì)生物分子的熒光標(biāo)記性質(zhì)研究[J]. 化學(xué)與生物工程 2019(11). 4. 李晶,劉雯,陳超,虞金寶.車前三個(gè)不同部位中主要化學(xué)成分含量差異及其黃嘌呤氧化酶體外抑制作用比較[J].實(shí)用中西醫(yī)結(jié)合臨床,2018,18(07):174-176. 3. 張靜, 楊平榮, 王燕萍,等. 高效液相色譜法同時(shí)測(cè)定玫瑰花等多種食物中尿酸及4種嘌呤含量[J]. 蘭州大學(xué)學(xué)報(bào)(醫(yī)學(xué)版), 2019(3):28-33. 2. 萬(wàn)冬梅, 鄭鵠志, 隆異娟,等. 基于木瓜蛋白酶過(guò)氧化物模擬酶活性的尿酸檢測(cè)[J]. 分析試驗(yàn)室, 2017, 10(v.36):22-25. 1. 李鵬威, 張堯, 李慶蓮,等. 基于三維石墨烯-普魯士藍(lán)構(gòu)建電化學(xué)酶?jìng)鞲衅饔糜谀蛩岬撵`敏檢測(cè)[J]. 分析化學(xué), 2019, 047(012):1938-1945.

質(zhì)檢證書(COA)

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批號(hào):JS298415 貨號(hào):S20001-25g
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摩爾濃度計(jì)算器

質(zhì)量 (mg) = 濃度 (mM) x 體積 (mL) x 分子摩爾量 (g/mol)

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