400nm Paramagnetic Hydroxyl Silica Coated Magnetic Nanoparticles/Beads For DNA/RNA Extraction

PRODUCT PARAMETERS

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Description

Overview of nano silica

Composition: Primarily composed of silicon dioxide (SiO2), similar to regular sand but on a much smaller scale.

Production: Nano silica can be produced through several methods such as sol-gel processes, vapor deposition, and plasma technology.

Applications: Due to its unique properties, nano silica finds applications in a wide range of fields including electronics, optics, biomedicine, and construction materials.

Features of nano silica

High Surface Area: One of the standout features of nano silica is its extremely high surface area relative to volume, which makes it highly reactive and useful for catalysis.

Enhanced Mechanical Properties: When added to other materials, nano silica can significantly improve mechanical strength, durability, and wear resistance.

Optical Properties: Depending on their size and shape, nano silica particles can manipulate light in interesting ways, making them useful in optical devices.

Biocompatibility: In biomedical applications, certain forms of nano silica are known for their biocompatibility and ability to deliver drugs within the body effectively.

Thermal Stability: Nano silica exhibits excellent thermal stability, allowing it to maintain its structure and properties at high temperatures.

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400nm Paramagnetic Hydroxyl Silica Coated Magnetic Nanoparticles/Beads For DNA/RNA Extraction

Specification of 400nm Paramagnetic Hydroxyl Silica Coated Magnetic Nanoparticles/Beads For DNA/RNA Extraction

400nm Paramagnetic Hydroxyl Silica-Coated Magnetic Beads for DNA/RNA Removal

High Performance in Nucleic Acid Filtration

These magnetic grains are 400 nanometers in size and have a silica covering with hydroxyl groups externally. They bind DNA and RNA promptly and efficiently in the existence of chaotropic salts. The paramagnetic core lets you control the beads with a magnet– no centrifugation or filtration is needed.

Regular Size and Surface Chemistry
Every set reveals tight dimension circulation and uniform surface residential properties. This makes sure repeatable binding ability and trustworthy outcomes throughout various runs. The hydroxyl-functionalized silica layer uses solid interaction with nucleic acids while reducing non-specific binding from healthy proteins or various other contaminants.

Fast and Easy Workflow
Just include the beads to your lysed sample, mix, and position the tube near a magnet. The beads pull to the side within seconds. Get rid of the liquid, clean the grains, then elute pure DNA or RNA in low-salt buffer or water. The entire procedure takes mins and fits easily right into manual or automated systems.

Broad Compatibility
These beads function well with lots of example types– blood, cells, cells, saliva, and more. They work with usual lysis buffers and removal procedures. You can use them in high-throughput setups or small removals without altering your approach.

Stable and Ready to Make use of
The grains come put on hold in liquid remedy and stay steady at area temperature for months. No special delivery or activation is needed prior to use. Just drink well, take the quantity you require, and start your removal right now.

Scientists and diagnostic laboratories choose these grains for clean yields, reduced carryover, and smooth assimilation into existing process. They deliver high-purity nucleic acids appropriate for PCR, sequencing, cloning, and other downstream applications.

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400nm Paramagnetic Hydroxyl Silica Coated Magnetic Nanoparticles/Beads For DNA/RNA Extraction

Applications of 400nm Paramagnetic Hydroxyl Silica Coated Magnetic Nanoparticles/Beads For DNA/RNA Extraction

Applications of 400nm Paramagnetic Hydroxyl Silica-Coated Magnetic Nanoparticles for DNA/RNA Removal

Reputable Nucleic Acid Filtration

These 400nm magnetic grains supply a quick and reliable way to essence DNA and RNA from several example kinds. The surface is covered with hydroxyl-modified silica, which binds nucleic acids strongly in the visibility of chaotropic salts. This makes them ideal for use in hand-operated methods or automated systems.

Broad Example Compatibility

The grains work well with blood, saliva, tissue, cells, plants, and microbial examples. They take care of both high- and low-input examples without shedding efficiency. Customers get constant yields and high pureness across various resources.

Basic Process Combination

No centrifugation or vacuum cleaner steps are needed. A magnet pulls the grains to television wall so fluids can be eliminated quickly. Laundry and elution steps adhere to basic lab methods. This saves time and decreases hands-on initiative.

Premium Results for Downstream Use

Drawn Out DNA and RNA reveal outstanding integrity and purity. They await PCR, qPCR, sequencing, cloning, and various other sensitive applications. Inhibitors like proteins or salts are properly removed throughout washing.

Scalable and Reproducible

The uniform 400nm dimension guarantees also binding and consistent actions in every run. Whether refining one example or hundreds, results stay reliable. Batch-to-batch variation is very little, sustaining long-lasting researches and routine testing.

Suitable for Automation

These beads do efficiently in robotic liquid-handling systems. Their magnetic response is solid sufficient for quick splitting up yet mild enough to avoid grain loss. Labs can scale up removal throughput without transforming chemistry.

Key Features:
– Hydroxyl silica surface for reliable nucleic acid binding
– 400nm dimension for optimal kinetics and managing
– Paramagnetic core for quick magnetic separation
– Suitable with varied organic samples
– Ready for both manual and automatic operations

Company Introduction

Welcome to HiphopGalaxy, a trusted global supplier of high-quality silicon dioxide (SiO2) powder, renowned for its exceptional purity and performance. Established with a vision to deliver cutting-edge materials that meet the diverse needs of modern industries, we have positioned ourselves as a leading player in the international market.

Our SiO2 powders find applications across multiple sectors, including adhesives, coatings, pharmaceuticals, cosmetics, polymers, and electronics. Each application benefits from the unique properties of our products—high surface area, excellent thixotropy, chemical inertness, and superior reinforcement capabilities. Whether you need hydrophilic or hydrophobic variants, we offer tailored solutions to meet your specific requirements.

If you have any questions, please feel free to contact us(nanotrun@yahoo.com).

Payment Methods

T/T, Western Union, Paypal, Credit Card etc.

Shipment Methods

By air, by sea, by express, as customers request.

5 FAQs of 400nm Paramagnetic Hydroxyl Silica Coated Magnetic Nanoparticles/Beads For DNA/RNA Extraction

Frequently Asked Questions

What are 400nm paramagnetic hydroxyl silica-coated magnetic beads?

These are tiny particles about 400 nanometers in size. They have a magnetic core and a silica surface covered with hydroxyl groups. The beads bind DNA or RNA in the presence of certain salts and can be moved using a magnet.

How do these beads help in DNA/RNA extraction?

In high-salt conditions, nucleic acids stick to the silica surface of the beads. You use a magnet to pull the beads out of the liquid. Then you wash away impurities. Finally, you release the pure DNA or RNA in low-salt buffer or water.

Why choose hydroxyl-coated silica beads over other types?

The hydroxyl groups on the silica surface give strong and consistent binding for nucleic acids. This coating works well across many sample types. It also reduces non-specific binding, which means cleaner results.

Are these beads compatible with automated systems?

Yes. Their uniform size and strong magnetic response make them ideal for use in robotic liquid handlers and high-throughput platforms. They move quickly in magnetic fields and resuspend easily after washing.

How should I store these magnetic beads?

Keep the beads at 2–8°C. Do not freeze them. Before use, gently mix the suspension to ensure even distribution. Avoid repeated freeze-thaw cycles or long exposure to room temperature to maintain performance.

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