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三(2-羧乙基)膦鹽酸鹽 高純,98%

TCEP

源葉
S16054
51805-45-9
C9H15O6P·HCl
286.65
MFCD00145469
品牌 貨號(hào) 產(chǎn)品規(guī)格 價(jià)格(RMB) 庫(kù)存(上海) 北京 武漢 南京 購(gòu)買(mǎi)數(shù)量
源葉 S16054-1g 高純,98% ¥40.00元 >10 - 5 -
源葉 S16054-5g 高純,98% ¥130.00元 >10 - - 6
源葉 S16054-25g 高純,98% ¥550.00元 2 - - 1
源葉 S16054-100g 高純,98% ¥2100.00元 6 3 - 1
源葉 S16054-500g 高純,98% ¥7000.00元 10 - - -
產(chǎn)品介紹 參考文獻(xiàn)(28篇) 質(zhì)檢證書(shū)(COA) 摩爾濃度計(jì)算器 相關(guān)產(chǎn)品

產(chǎn)品介紹

熔點(diǎn): 177℃
外觀: 白色粉末
溶解性: Soluble  in  water  (5  mg/ml),  and  methanol.,  Soluble  in  water  (5  mg/ml),  and  methanol.
敏感性: 易吸潮
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(hù)參考交流研究之用。

參考文獻(xiàn)(28篇)

23. [IF=9.9] Hui Feng et al."A facile electrochemical aptasensor for chloramphenicol detection based on synergistically photosensitization enhanced by SYBR Green I and MoS2."JOURNAL OF COLLOID AND INTERFACE SCIENCE".2024 May;: 22. [IF=9.1] Jian Wang et al."Regulation of uniformity and electric field distribution achieved highly energy storage performance in PVDF-based nanocomposites via continuous gradient structure."CHINESE CHEMICAL LETTERS".2024 Mar;:109714 21. [IF=19] Binqi Wei et al."EVs-on-a-Bubble: Self-Aggregated Click Bubbles Streamline Isolation and Amplified Profiling of Circulating Extracellular Vesicles."ADVANCED FUNCTIONAL MATERIALS.2023 Dec;:2310823 20. [IF=5.7] Dong Xiaoze et al."A novel ternary Y-DNA walker amplification strategy designed fluorescence aptasensor based on Au@SiO2@Fe3O4 nanomaterials for ochratoxin A detection."MICROCHIMICA ACTA.2023 Nov;190(11):1-11 19. [IF=7.4] Tingting Liang et al."CRISPR/dCas9-Mediated Specific Molecular Assembly Facilitates Genotyping of Mutant Circulating Tumor DNA."ANALYTICAL CHEMISTRY.2023;XXXX(XXX):XXX-XXX 18. [IF=20.8] Minogue Eleanor et al."Glutarate regulates T cell metabolism and anti-tumour immunity."Nature Metabolism.2023 Aug;:1-18 17. [IF=5.76] Mingwei Liu et al."A convenient fluorescent/electrochemical dual-mode biosensor for accurate detection of Pb2+ based on DNAzyme cycle."BIOELECTROCHEMISTRY.2023 Aug;152:108452 16. [IF=3.532] Zhiguang Suo et al."An efficient electrochemical biosensor for the detection of heavy metal lead in food based on magnetic separation strategy and Y-DNA structure."Analytical Methods.2023 Feb;: 15. [IF=6.652] Simeng Zheng et al."An ultrasensitive and specific ratiometric electrochemical biosensor based on SRCA-CRISPR/Cas12a system for detection of Salmonella in food."FOOD CONTROL.2023 Apr;146:109528 14. [IF=5.76] Huali Jin et al."A label-free impedance-based electrochemical sensor based on self-assembled dendritic DNA nanostructures for Pb2+ detection."BIOELECTROCHEMISTRY.2023 Feb;149:108312 13. [IF=3.223] Zeping Lv et al."An ultrasensitive DNA sensor for Hg2+ assay based on electrodeposited Au/carbon nanofibers-chitosan and reduced graphene oxide."ELECTROANALYSIS 12. [IF=13.273] Yuan Li et al."Biocatalytic living materials built by compartmentalized microorganisms in annealable granular hydrogels."CHEMICAL ENGINEERING JOURNAL. 2022 Oct;445:136822 11. [IF=14.188] Xuehui Liu et al."Stimuli-Mediated Specific Isolation of Exosomes from Blood Plasma for High-Throughput Profiling of Cancer Biomarkers."Small Methods. 2021 Dec 19 10. [IF=9.229] Miaomiao Han et al."Amyloid Protein-Biofunctionalized Polydopamine Nanoparticles Demonstrate Minimal Plasma Protein Fouling and Efficient Photothermal Therapy."Acs Appl Mater Inter. 2022;XXXX(XXX):XXX-XXX 9. [IF=4.464] Lina Lv et al."A “signal off” aptasensor based on AuNPs/Ni-MOF substrate-free catalyzed for detection Enrofloxacin."J Electroanal Chem. 2022 Apr;911:116251 8. [IF=1.967] Chenling Qu et al."A homogeneous electrochemical aptasensor based on DNA assembly for zearalenone detection."J Chin Chem Soc-Taip. 2021 Oct;68(10):1998-2005 7. [IF=3.223] Min Wei et al."Electrochemical Aptasensor for Zearalenone Based on DNA Assembly and Exonuclease III as Amplification Strategy."Electroanal. 2021 Jul;33(7):1691-1698 6. [IF=3.361] Huali Jin et al."An electrochemical aptasensor for lead ion detection based on catalytic hairpin assembly and porous carbon supported platinum as signal amplification."Rsc Adv. 2020 Feb;10(11):6647-6653 5. [IF=7.46] Min Wei et al."Development of the signal amplification based on Au@Pt/MIL-101(Cr) as mimetic enzyme and RecJf exonuclease-assistant target recycling."Sensor Actuat B-Chem. 2020 Jun;312:128019 4. [IF=10.588] Yuanyuan Liu et al."A magnetic relaxation switching and visual dual-mode sensor for selective detection of Hg2+ based on aptamers modified Au@Fe3O4 nanoparticles."J Hazard Mater. 2020 Apr;388:121728 3. [IF=13.273] Baoshan He et al."Nb.BbvCI powered DNA walking machine-based Zr-MOFs-labeled electrochemical aptasensor using Pt@AuNRs/Fe-MOFs/PEI-rGO as electrode modification material for patulin detection."Chem Eng J. 2021 Feb;405:126642 2. Baoshan He, Xiaoze Dong, Nb.BbvCI powered DNA walking machine-based Zr-MOFs-labeled electrochemical aptasensor using Pt@AuNRs/Fe-MOFs/PEI-rGO as electrode modification material for patulin detection, Chemical Engineering Journal, Volume 405, 2021, 126642, 1. Cheng, Zhongzhe, et al. "Determination of thailandepsin B in rat plasma with a LC–MS/MS method." Bioanalysis 7.1 (2015): 39-52.36.161.84.113

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