納米金;納米金粒子;金納米顆粒;納米金溶液 ??金納米粒子 納米金溶液(國產(chǎn))?5nm-400nm
Au nanorods, Gold nanorod 金納米棒吸收波長(cháng)從550nm 到900nm ,溶劑為水。常用相粒徑10nm ?25nm
?
Introduction? ?
根據不同用途,對納米金粒子的粒徑和緩沖液有特殊要求的請詳詢(xún)。
納米金粒子粒徑規格:5nm-400nm?
金納米棒規格: 20nm-200nm粒徑 ?其他規格 請詳詢(xún) sigma原裝進(jìn)口貨期2-4周,。
Colloidial gold nanoparticles?have been utilized for centuries by artists due to the vibrant colors produced by their interaction with visible light. More recently, these unique optical-electronics properties have been researched and utilized in high technology applications such as organic photovoltaics, sensory probes, therapeutic agents, drug delivery in biological and medical applications, electronic conductors and catalysis. The optical and electronic properties of gold nanoparticles are tunable by changing the size, shape, surface chemistry, or aggregation state.
Optical & Electronics Properties of Gold Nanoparticles
Gold nanoparticles interaction with light is strongly dictated by their environment, size and physical dimensions. Oscillating electric fields of a light ray propagating near a colloidal nanoparticle interact with the free electrons causing a concerted oscillation of electron charge that is in resonance with the frequency of visible light. These resonant oscillations are known as surface plasmons. For small (~30nm) monodisperse gold nanoparticles the surface plasmon resonance phenomona causes an absorption of light in the blue-green portion of the spectrum (~450 nm) while red light (~700 nm) is reflected, yielding a rich red color. As particle size increases, the wavelength of surface plasmon resonance related absorption shifts to longer, redder wavelengths. Red light is then absorbed, and blue light is reflected, yielding solutions with a pale blue or purple color (Figure 1). As particle size continues to increase toward the bulk limit, surface plasmon resonance wavelengths move into the IR portion of the spectrum and most visible wavelengths are reflected, giving the nanoparticles clear or translucent color. The surface plasmon resonance can be tuned by varying the size or shape of the nanoparticles, leading to particles with tailored optical properties for different applications.
Figure 1.?Colors of various sized monodispersed gold nanoparticles
This phenomenon is also seen when excess salt is added to the gold solution. The surface charge of the gold nanoparticle becomes neutral, causing nanoparticles to aggregate. As a result, the solution color changes from red to blue. To minimize aggregation, the versatile surface chemistry of gold nanoparticles allows them to be coated with polymers, small molecules, and biological recognition molecules. This surface modification enables gold nanoparticles to be used extensively in chemical, biological, engineering, and medical applications. Typical properties of gold nanoparticles are presented inTable 1. ?
Applications
The range of applications for gold nanoparticles is growing rapidly and includes:
Quality Advantage
Aldrich Materials Science, in conjunction with Cytodiagnostics, is proud to offer a broad portfolio of gold nanoparticles geared specifically for high-technology applications within the fields of life science and materials science. Gold nanoparticles are available in sizes ranging from 5 nm to 400 nm in diameter with numerous surface functionalities in a variety of solvent compositions.
While spherical gold nanoparticles are traditionally synthesized using reducing agents such as?sodium citrate?or?sodium borohydride, Cytodiagnostics has a propriety process and formulation that leads to the preparation of highly spherical gold nanoparticles, without harsh reducing agents. When compared to other gold nanoparticles, these nanoparticles have the many advantages, including:
Figure 2.?DLS & UV-Vis spectra showing precise gold nanoparticles from Cytodiagnostics.
Figure 3.?TEM images of?5 nm?(left) and?400 nm?(right) gold nanoparticles with <4% CV.
Outlook
Gold nanoparticles are versatile materials for a broad range of applications with well characterized electronic and physical properties due to well-developed synthetic procedures. In addition, their surface chemistry is easy to modify. These features have made gold nanoparticles one of the most widely used nanomaterials for academic research and an integral component in point-of-care medical devices and industrial products world-wide. The broad offer of gold nanoparticles by Aldrich Materials Science, accessible to the global research community, serves to increase their adoption in high-technology applications.
查看更多》
Wolcavi Biotech致力于干細胞免疫治療、分子生物學(xué) 、免疫學(xué)、體外診斷等相關(guān)領(lǐng)域的實(shí)驗需求產(chǎn)品開(kāi)發(fā)和銷(xiāo)售。主要產(chǎn)品有抗原抗體|無(wú)血清培養基|細胞培養耗材并代理銷(xiāo)售Abcam、Invitrogen(Gibco)、Roche、Sigma、R&D、Meridian等二十多家國外知名品牌。
? Copyright 2021 by WOLCAVI BIOTECH?All Rights Reserved. ? 京ICP備15043915號-1