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黄曲霉毒素G1

    
分析标准品,Purity≥98%

Aflatoxin G1

源叶
B24053 一键复制产品信息
1165-39-5
C17H12O7
328.27
MFCD00005089
黄曲霉素G1;AF G1; Aflatoxin G(1)
货号 规格 价格 上海 北京 珠海 重庆 武汉 购买数量
B24053-1mg
分析标准品,Purity≥98%

¥1400.00

3 4 2 - -
B24053-5mg
分析标准品,Purity≥98%

¥4000.00

1 - - - -
产品介绍 参考文献(29篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

熔点: 244-246°C
沸点: 612.1°C at 760 mmHg
比旋光度: D -556° (chloroform)
外观: 粉末
溶解性: DMSO  or  Methanol
敏感性: 对光敏感
储存条件: 2-8℃
密度: 1.59
注意: 部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。

参考文献(29篇)

24. [IF=5.3] Guo Liang et al."Signal-enhanced electrochemical sensor employing MWCNTs/CMK-3/AuNPs and Au@Pd core–shell structure for sensitive determination of AFB1 in complex matrix."MICROCHIMICA ACTA.2024 Oct;191(10):1-13 23. [IF=8.5] Huimin Zhou et al."Development of a mesoporous polypyrrole nanofiber mat for simultaneous detection of multiple mycotoxins in various foods."FOOD CHEMISTRY.2025 Jan;463:141153 22. [IF=8.5] Shi Tang et al."A dual-signal mode electrochemical aptasensor based on tetrahedral DNA nanostructures for sensitive detection of citrinin in food using PtPdCo mesoporous nanozymes."FOOD CHEMISTRY.2024 Dec;460:140739 21. [IF=6.5] Hua Zheng et al."Establishment of an amplification strategy - specific binding - convenient processing integrated aflatoxin B1 detection method based on Fe3O4-NH4/AuNPs/apt-S1."Food Chemistry-X.2024 Oct;23:101605 20. [IF=6.1] Handong Yao et al."A magnetic graphene oxide and UiO-66 based homogeneous dual recognition electrochemical aptasensor for accurate and sensitive detection of aflatoxin B1."TALANTA".2024 Jun;273:125915 19. [IF=7] Mingsan Miao et al."A controllable Y-shaped DNA structure assisted aptasensor for simultaneous detection of AFB1 and OTA based on ARGET ATRP."Journal of Materials Chemistry B".2024 May;: 18. [IF=5.9] Jiaojiao Zhou et al."Aptamers Adsorbed on WSe2 Nanosheets in a Label-Free Colorimetric Aptasensor for Ochratoxin A."ACS Applied Nano Materials".2024;XXXX(XXX):XXX-XXX 17. [IF=4.8] Zafar Iqbal Tanveer et al."Reduced graphene oxide-zinc iron oxide nanomaterial as selective dispersive solid-phase extraction sorbent for extraction and enrichment of aflatoxins from milk combined with UHPLC-MS/MS analysis."MICROCHEMICAL JOURNAL.10.1016/j. 16. [IF=2.9] Zafar Iqbal Tanveer et al."Evaluation of reduced graphene oxide-based nanomaterial as dispersive solid phase extraction sorbent for isolation and purification of aflatoxins from poultry feed, combined with UHPLC–MS/MS analysis."Food Additives and Contamin 15. [IF=14.9] Xu Guohua et al."Structural basis for high-affinity recognition of aflatoxin B1 by a DNA aptamer."NUCLEIC ACIDS RESEARCH.2023 Jun;: 14. [IF=9.231] Jiaojiao Zhou et al."Passion fruit-inspired dendritic mesoporous silica nanospheres-enriched quantum dots coupled with magnetism-controllable aptasensor enable sensitive detection of ochratoxin A in food products."FOOD CHEMISTRY.2023 Nov;425:136445 13. [IF=14.224] Letian Li et al.""Lollipop" particle counting immunoassay based on antigen-powered CRISPR-Cas12a dual signal amplification for the sensitive detection of deoxynivalenol in the environment and food samples."JOURNAL OF HAZARDOUS MATERIALS.2023 Aug;455:13157 12. [IF=11.072] Chun Wang et al."Converting waste expanded polystyrene into higher-value-added hyper-crosslinked porous polymer for rapid and high-efficient adsorption of aflatoxins."Journal of Cleaner Production.2023 Jul;408:137102 11. [IF=5.895] Zhilong Wang et al."CRISPR/Cas12a-Assisted Chemiluminescence Sensor for Aflatoxin B1 Detection in Cereal Based on Functional Nucleic Acid and In-Pipet Rolling Circle Amplification."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX 10. [IF=6.556] Cuiyun Zhou et al."Polystyrene microsphere-mediated optical sensing strategy for ultrasensitive determination of aflatoxin M1 in milk."TALANTA.2023 Jun;258:124357 9. [IF=9.231] Mingming Xu et al."Phenyl-imidazole based and nitrogen rich hyper-crosslinked polymer for sensitive determination of aflatoxins."FOOD CHEMISTRY.2023 Mar;405:134847 8. [IF=10.383] Liangqiong Ren et al."“Three-in-one” Zr-MOF Multifunctional Carrier-mediated Fluorescent and Colorimetric Dual-signal Readout Biosensing Platform to Enhance Analytical Performance."ACS Applied Materials & Interfaces.2022;XXXX(XXX):XXX-XXX 7. [IF=16.744] Qianqian Wang et al."Design of hyper-cross-linked polymers with tunable polarity for effective preconcentration of aflatoxins in grain."CHEMICAL ENGINEERING JOURNAL.2022 Oct;:139544 6. [IF=3.532] Weili Qiao et al."Colloidal Au sphere and nanoflower-based immunochromatographic strips for sensitive detection of zearalenone in cereals."Analytical Methods.2022 Sep;: 5. [IF=6.408] Zhu Tong et al."An electrochemical aptasensor based on target triggered multiple-channel DNAzymes cycling amplification strategy with PtFe@Co-MOF as signal amplifier."MICROCHIMICA ACTA.2022 Oct;189(10):1-9 4. [IF=9.231] Xuqin Lv et al."Robust and facile label-free colorimetric aptasensor for ochratoxin A detection using aptamer-enhanced oxidase-like activity of MnO2 nanoflowers."FOOD CHEMISTRY.2023 Feb;401:134144 3. [IF=10.588] Feng Hong et al."A universal, portable, and ultra-sensitive pipet immunoassay platform for deoxynivalenol detection based on dopamine self-polymerization-mediated bioconjugation and signal amplification."JOURNAL OF HAZARDOUS MATERIALS. 2022 May;:129257 2. [IF=9.038] Junpeng Zhao et al."Horseradish peroxidase-catalyzed formation of polydopamine for ultra-sensitive magnetic relaxation sensing of aflatoxin B1."J Hazard Mater. 2021 Jun;:126403 1. [IF=10.618] Feng Hong et al."Highly sensitive magnetic relaxation sensing method for aflatoxin B1 detection based on Au NP-assisted triple self-assembly cascade signal amplification."Biosens Bioelectron. 2021 Nov;192:113489

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