Preparation based on tumor marker sensor of sodamide group smectite and application
A sodium amide-based montmorillonite and tumor marker technology, applied in the field of functional materials and biosensing, can solve the problems of complex instruments, cumbersome detection process and high cost, and achieve high sensitivity, good specificity and simple method. Effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0067] The preparation of the tumor marker sensor based on sodium amide montmorillonite comprises the following steps:
[0068] (1) At 30°C, a silver-gold alloy film with a gold / silver mass ratio of 1:1 was floated in 10 mol L -1 After 4 min on the surface of the nitric acid solution, the silver was etched away to form a nanoporous gold film. The nanoporous gold membrane was washed with ultrapure water until its pH = 7.0.
[0069] (2) Weigh 10.00 g of montmorillonite, put it into a large beaker, add 100 mL of distilled water, stir for 2 h, place it on a stable laboratory table without vibration, and let it stand; after the layers are separated, take out the supernatant, It is montmorillonite suspension; add the above suspension to 250 mL of 0.50 mol L -1 In the NaCl solution, stir for 12 h and let stand; after the layers are separated, suck out the supernatant; add 250 mL of -1 NaCl solution, stirred for 12 h, let it stand still, sucked out the supernatant; put the montmori...
Embodiment 2
[0075] The preparation of the tumor marker sensor based on sodium amide montmorillonite comprises the following steps:
[0076] (1) At 30°C, a gold / silver mass ratio of 1:1.1 silver-gold alloy film was floated in 12 mol L -1 On the surface of nitric acid solution for 5 min, the silver was etched away to form a nanoporous gold film. The nanoporous gold membrane was washed with ultrapure water until its pH = 7.0.
[0077](2) Weigh 10.00 g of montmorillonite, put it into a large beaker, add 100 mL of distilled water, stir for 2.5 h, place it on a stable laboratory table without vibration, and let it stand; after stratification, take out the supernatant, It is montmorillonite suspension; add the above suspension to 250 mL of 0.50 mol L -1 In NaCl solution, stir for 18 h and let stand; after the layers are separated, suck out the supernatant; add 250 mL of -1 NaCl solution, stirred for 12 h, let it stand still, sucked out the supernatant; put the montmorillonite suspension in a ...
Embodiment 3
[0083] The preparation of the tumor marker sensor based on sodium amide montmorillonite comprises the following steps:
[0084] (1) At 35 °C, a gold / silver weight ratio of 1:1.2 silver-gold alloy film was floated in 15 mol L -1 After 7 min on the surface of the nitric acid solution, the silver was etched away to form a nanoporous gold film. The nanoporous gold membrane was washed with ultrapure water until its pH = 7.0.
[0085] (2) Weigh 10.00 g of montmorillonite, put it into a large beaker, add 100 mL of distilled water, stir for 3 h, place it on a stable laboratory table without vibration, and let it stand still. After layering, take out the supernatant, which is the montmorillonite suspension. Add the above suspension to 250 mL of 0.50 mol L -1 NaCl solution, stirred for 24 h and allowed to stand. After the layers were separated, aspirate the supernatant; add 250 mL of 0.50 mol L -1 NaCl solution, stirred for 12 h, allowed to stand, and sucked out the supernatant. T...
PUM
Property | Measurement | Unit |
---|---|---|
recovery rate | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com