产品特点:
1.8 um超高效液相色谱柱1.8 µm particles for increased separation efficiency
※ 大大缩短分析时间※ 显著提高样品分离度※ 相对其它品牌1.8 um的色谱柱具有较低的柱反压※ 与各品牌超高效液相色谱仪接口匹配
显著液相色谱分析中,使用小颗粒填料来缩短分析时间,是一种发展方向。今年出现的1.8 um的颗粒的超高效色谱柱更是新的里程碑。德国MN公司在新一代NUCLEODUR高纯球型硅胶基础上,推出全系列1.8 um颗粒的色谱柱,不但带来更高的分析效果,还有五种键合相选择,满足各类样品有效分离。
相对低的柱反压
NUCLEODUR填料具有*对称的硅球,并对颗粒分布进行更严格的控制,使1.8 um的色谱柱具备更高柱效的同时,相对其它品牌同类色谱柱具有较低的柱反压,更容易操作。色谱柱:50×4mm 流动相:80%甲醇流 速:1.5毫升/分钟 温 度:22℃典型柱反压=130bar(2000psi)五种键合相选择
NUCLEODUR的1.8 um的超高效分析柱,能够提供5个系列的产品,您可以根据具体样品灵活选择?!?/span> C18 Gravity/C8 Gravity: PH适用范围1.0-11.0※ C18 Isis: 稳定适用温度可达80℃※ C18 Pyramid: 能够在*水体系中稳定使用※ C18 Sphinx RP: 杂合键合相,更广泛选择性
显著提高分离度※ NUCLEODUR C18 Gravity※ 3 um填料的柱效>100,000塔板/米※ 1.8 um填料的柱效>166,667塔板/米以上是两种颗粒填料典型的柱效,可以看到1.8 um填料的柱效要比3 um的高67%。这意味1.8 um的色谱柱在相同色谱柱条件下,显著提高样品分离度,或在保持分离度条件下,相应缩短分析时间。
产品应用:
下图是在相同分析条件下,1.8 um颗粒的色谱柱显著提高了样品的分离度。 色谱柱颗粒对分离度的影响
 色谱柱:NUCLEODUR C18 Gravity 50×4mm A)3 um B)1.8 um 流动相:乙腈:水=80:20 流 速:2.0毫升/分钟 进样量:5 ul 柱 压:A)80bar B)160bar 检测器:UV 254nm 样 品:1.萘 2.乙苯 |
高流速,缩短分析时间 根据色谱分析原理“Van-Deemter-Plot”,小颗粒的分析柱能够使用更高的流动相流速,5 um的*流速是1毫升/分钟,而1.8 um的色谱柱经常使用2-3毫升/分钟的流速。这样就能够在保持相同分离度的条件下,大大缩短分析时间。
 色谱柱:NUCLEODUR C18 Isis 50×4.0mm 流动相:*甲醇 检测器:UV 254nm |
订货信息:
订货指南 |
| 50×2mm | 50×3mm | 50×4.6mm |
C18 Gravity | 760079.20 | 760079.30 | 760079.46 |
C8 Gravity | 760755.20 | 760755.30 | 760755.46 |
C18 Isis | 760405.20 | 760405.30 | 760405.46 |
C18 Pyramid | 760272.20 | 760272.30 | 760272.46 |
C18 Sphinx RP | 760822.20 | 760822.30 | 760822.46 |
相关资讯:
1.8 µm particles for increased separation efficiency |

| Decrease of analysis time (ultra fast HPLC) Shorter columns with high separation efficiency Significant improvement of resolution Increased detection sensitivity Suitable for LC/MS due to low bleeding characteristics | 
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| All NUCLEODUR® premium phases are available in 1.8 μm: C18 Gravity, C8 Gravity, C18 Isis, C18 Pyramid, PolarTec, PFP, Sphinx RP, C18 HTec,HILIC |

| NUCLEODUR® 1.8 μm particles are fractionated to limit the increase in back pressure. | |
NUCLEODUR® silica with 1.8 µm particle size Miniaturization in HPLC has a long history. It started in the early stage of HPLC development with the reduction of particle size from 10 µm via 7 μm to standard 5 µm – which is still the most widely used particle diameter in analytical HPLC – to 3 µm spherical particles which so far was the smallest particle size available for gaining higher theoretical plates and efficiencies. With the introduction of the 1.8 µm NUCLEODUR®particles researchers have turned over an exciting leaf in HPLC column technology.
Features of 1.8 µm NUCLEODUR® particles | | 
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| Increase of separation efficiency by higher number of theoretical plates (N): 50 x 4.6 mm NUCLEODUR® C18 Gravity | |
| 3 µm: | N ≥ 100 000 plates/m (h value ≤ 10) | |
| 1.8 µm: | N ≥ 166 667 plates/m (h value ≤ 6) | |
| Increase of the plate number by ~ 67 % offers the possibility of using shorter columns with equal plate numbers resulting in a decrease of analysis time. | |
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| Significant improvement in resolution Use of 1.8 μm instead of 3 µm particles leads to an increase of resolution by a factor 1.29 (29 %) | | 
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| Higher flow rates and shorter run times Optimal flow rate for 1.8 µm particles is higher than for 3 and 5 µm particles – the flow rate should be at the van-Deemter minimum. | | Van-Deemter plot
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| Column back pressure Due to the smaller particle size the back pressure will increase. Because of the high sphericity of the NUCLEODUR® particles and the very narrow particle size distribution we are able to keep the back pressure on a moderate level. Thus NUCLEODUR® columns can be used on modernen ultra fast HPLC instruments as well as in combination with conventional HPLC systems with pumps up to 400 bar. | | Comparison of back pressures | Eluent: | 100 % methanol | Flow rate: | 1.5 mL/min | Temperature: | 22 °C | Column dimensions: | 50 x 4.6 mm | | NUCLEODUR® C18 Gravity | Competitor | 3 µm | 70 bar | – | 1.8 µm | 130 bar | 170 bar | | | | |
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| Technical requirements To gain the best result in ultra fast HPLC based on 1.8 μm particles certain technical demands on the instrument are made. | | Pumps for pressures of 250–1000 bar
Flow rates of 2–3 mL/min
Minimized dead volumes of the LC system
Fast data recording
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| Versatile selectivities All NUCLEODUR® premium phases are available with 1.8 µm particles: | | C18 Gravity
C8 Gravity
C18 Isis
C18 Pyramid
PolarTec
PFP
Sphinx RP
C18 HTec
HILIC
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