Parylene and methacryloxypropyl trimethoxy silane A-174 Silane CAS 2530-85-0
Parylene and methacryloxypropyl trimethoxy silane A-174 Silane CAS 2530-85-0
Parylene and methacryloxypropyl trimethoxy silane A-174 Silane CAS 2530-85-0
Parylene and methacryloxypropyl trimethoxy silane A-174 Silane CAS 2530-85-0
Parylene and methacryloxypropyl trimethoxy silane A-174 Silane CAS 2530-85-0

Parylene and methacryloxypropyl trimethoxy silane A-174 Silane CAS 2530-85-0

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Supply Ability:
1000 per Month
Payment Terms:
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Guangzhou Ecopower New Material Co., Limited

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Product Details

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Product Description

Parylene and A-174 Silane CAS 2530-85-0


 Performance Materials  silane is employed in adhesive and sealant systems
cured via a free radical mechanism, such as polyesters, polyurethanes, acrylics, and many thermoplastics
such as PVC, polyolefins and polyurethanes
Chemical Name
γ-methacryloxypropyl trimethoxy silane
Model Number
Crosile -174
Synonyms
A-174/KH570
Chemical Formula
C₁₀H₂₀O₅Si
CAS NO
2530-85-0

Physical Properties:This product is straw yellow liquid,can dissolve in methanol,ethanol,toluene,xylene and acetone.When stir it fully,it can dissolve in water and the water solubility can reach 5%w/w.

Specification

Test Item
Target Values(Spec.Limits)
Crosile-174 Content
≥ 98.0%
Specific Gravity(25°C)
1.040 ± 0.02
Physical state 
Liquid
Colour
Colourless
Flammability
Flammable
BOILING POINT
255 °C
Refractive index(25°C)
1.430 ± 0.05
Chorine content
≤15ppm
Application

Parylene provides an entirely conformal, durable, pinhole-free substrate coating of extreme utility for an exceptional range of materials, products and purposes. Despite its many advantages, parylene's chemical structure can actually interfere with the reliable interface adhesion required for optimal performance. The chemical vapor deposition (CVD) process that generates so many of parylene's benefits also nullifies chemically-based substrate adhesion; only mechanical adhesion is possible.

mplementing optimal adhesion can require surface modification via application of adhesion promoting agents or methods. The materials and processes used for these purposes are largely dependent on the substrate surface and component's specific operational environments and functions. Although most adhesion promotion methods are used prior to CVD, several can be integrated into the coating-process itself, Among the methods of adhesion promotion used with parylene are:

Thorough surface-cleaning, which stimulates enhanced adhesion by eliminating accumulated substrate contaminants whose presence can diminish overall coating quality.

Heat-treating. for three hours at temperatures of 140°C, beneficially activates longer-term adhesion and insulation.

Active, wired devices profit from bilayer component-encapsulation processes.


While these techniques have their uses for parylene adhesion promotion, the chemical monolayer Silane A-174 (3-Methacryloxypropyltrimethoxysilane - C10H20O5Si) is used most frequently to modify substrate surfaces and improve parylene adhesion.


The Uses of Silane174

Silane 174's value as an adhesion promoting agent stems largely from its versatility. It can be successfully applied to substrate materials like elastomer, glass, metal, paper, plastic or quartz, among a wide range of surface substances. The 174 silane molecule develops a robust chemical bond with the substrate, facilitating the improved surface adhesion capacity of parylene’s mechanical property. Optimal parylene adhesion is commonly achieved by a treatment with 174 silane prior to initiating the CVD process. However, regarding appropriate procedural scheduling:



it is recommended that 174's application be completed after any necessary masking operations have been finished;

depending on substrate materials, manual spray, soaking, or vapor phase silane processing techniques may be used to apply 174.

Process Balance

While the silane promotes adhesion, the parylene assures protection. Thus, appropriately proportional intermixtures of silane 174 and parylene need to be used, in all cases. Corrosion-resistance can be diminished where the relationship between parylene and silane is inexact, causing part and function deterioration from both beneath- and external to the conformal covering. This is especially the case with medical implants, where reliable component function is mandatory, despite being subjected to persistent exposure to often harsh bodily fluids.

Of the two basic methods for applying silane 174 to substrates, the first, in-chamber vapor delivery, is somewhat easier to enact but offers significantly diminished coating outcomes. Silane vapor promotion is impossible to efficiently supervise during real time, causing a proportional loss of effective process monitoring. As a consequence:

the potential of operator error increases,

leading to a far greater incidence of insufficient or excessive silane promotion;

imperfect silane surface-conformity frequently develops under these conditions,

stimulating degraded parylene coverage during the subsequent deposition cycle.

Thus, the problems inherent in achieving inappropriate production-intermixture alluded to above are more likely to occur, adding to production downtime and expense, as well as customer dissatisfaction.

The wet application method of silane application further allows inspection and monitoring of the immersion-solution throughout the process. Following silane 174 immersion, CVD processes for parylene application should be implemented within 30 hours.

Mixing only the quantity of silane required for the procedure at hand is recommended, to assure appropriate preparation/application and safe work conditions, Silane's 24-hour shelf-life precludes storage of any excess, which should be discarded immediately in a solvent sink, subsequently drained, then rinsed with IPA. At all times, avoid breathing the solution's vapors or causing contact with skin or eyes:

Conclusion

Improving substrate adhesion is necessary because parylene will peel-off some substrates, if not appropriately treated with silane 174. Immersion methods of application provide the most reliable solution.

Certifications

ISO 14001 Certified

Advanced Lab

ISO 9001

Company Profile

Basic Information
Guangzhou Ecopower New Material Co., Ltd is a high-tech oriented company having own factories and production lines; Ecopower has been specializing in manufacturing and distributing products of silane coupling agent, precipitated silica, petroleum hydrocarbon resins and CSM rubber, which are widely used in rubber tires, footwear, printing ink, painting, coatings and adhesives industries, etc. The sales center is located in Yuexiu District of the Guangzhou city.
As an innovative chemical raw material supplier, we not only provide products to customers, but also render technical advice and solutions as well.
Our silane coupling agent plant is located in YongXiu, Jiangxi. the capacity is more than 7000 MT/year.
The Advantages for our silane coupling agent are:
1)Full set of environment facility in the chemical industry area,
2)Total 5 products lines and another two new product lines are planned in 2018;
3)11 technical people worked in R&D lab and cooperated with Nanchang University, Qingdao University of Science and Technology …..for new products and new process. Owned 6 technical patents how to produce silane coupling agent.

Exhibition
Packing & Storage

25kg plastic drum

200kg plastic drum


1000 kg IBC container


1.Package: 25 kg or 200 kg, 1000 kg in plastic drum.

2.Storage: Kept in a low temperature, dry and ventilated place, avoid direct sunlight.

3. Shelf life: One year in ventilating, cool and dry area.

FAQ

Question 1: How many payment terms do you support?
A: L/C,D/A,D/P,T/T,Western Union, Money Gram payments for offline orders. etc.

Questions 2: Are you factory or trader?
A: We are factory which is located in Jiangxi. We produce silane coupling agent, precipitated silica, petroleum hydrocarbon resin, gum resin and CSM rubber.

Question 3: What’s Alibaba Trade Assurance?
A: Trade Assurance is a new service of Alibaba Group, and can protect the rights of the buyers. It gives different protection amounts to suppliers according to their performance. If the buyers finish payment, but suppliers don’t deliver, or suppliers deliver, but the quality doesn’t match contract’s requirements, the buyers can apply for 100% refund.


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