Q Exactive™ Plus 组合型四极杆 Orbitrap™ 质谱仪
Q Exactive™ Plus 组合型四极杆 Orbitrap™ 质谱仪
Thermo Scientific™

Q Exactive™ Plus 组合型四极杆 Orbitrap™ 质谱仪

使用一台质谱仪在单次常规分析中进行可靠的表征分析、定量和确认。

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货号扫描速率质量范围
IQLAAEGAAPFALGMBDK最高 12 Hz50 至 6000 m/z
货号 IQLAAEGAAPFALGMBDK
价格(CNY)
-
申请报价
扫描速率:
最高 12 Hz
质量范围:
50 至 6000 m/z

使 Quanfirmation™ 迈进一步。Thermo Scientific™ Q Exactive™ 组合型四极杆-Orbitrap™ 质谱仪引进了革命性概念 Quanfirmation。Q Exactive™ Plus 组合型四极杆 Orbitrap™ 质谱仪以更出色的性能和全新的选项使 Quanfirmation 迈进一步,不同领域(从可靠的 DMPK 定性/定量筛查研究到完整单克隆抗体的表征)的应用能力都得到提升。

卓越定量能力

  • 先进四极杆技术 (AQT) 改善了前体选择和传输,对复杂基质中的低丰度分析物进行更精确定量
  • 通过复杂的数据独立性采集 (DIA) 和平行反应监测 (PRM),可进行可重现的定量测定和绝对可靠的定性分析
  • 先进的主动离子束传输组件(AABG)减少了噪音以及维护需求

完整蛋白质的分析能力增强

  • 可选完整蛋白质模式为完整蛋白质和蛋白质复合物的分析提供了卓越的大分子捕获能力
  • 可选的更高分辨率确保了自顶向下蛋白质组学和脂质组学的极可靠鉴定

极为可靠的结果

  • HR/AM 和全扫描功能可以自始至终捕获所有样品数据,从而可以进行回顾性数据分析而无需再次运行样品
  • 分辨率高达 140,000 FWHM,可消除同量异序同分异构化合物的干扰,在分析复杂基质中的样品时,提高结果可靠性
  • 全扫描和全离子裂解 (AIF) 扫描模式下,质量准确度均优于 1 ppm,可以确保可靠的化合物鉴定
  • 12 Hz 的快速扫描和光谱多通路技术特别适合 UHPLC 应用
  • 快速极性切换可以获得尽可能多的信息
  • AIF 和多种解离技术——源内 CID 和 HCD——可以辅助化合物鉴定
  • 质量数范围达到 6000 m/z,可以提高对单电荷小分子和生物分子的检测能力
  • 超过四个数量级的扫描动态范围以及飞克级灵敏度,可以在一次扫描中同时检测痕量级和高丰度化合物

仅供研究使用。不可用于诊断程序。

规格
动态范围>5000:1
质量准确度内部:<1 ppm RMS
外部:<3 ppm RMS
极性切换<1 秒一个完整周期(一次全正离子模式扫描和一次全负离子模式扫描,分辨率设置为35,000)
扫描速率最高 12 Hz
灵敏度全扫描 MS:柱上 500 fg 丁螺环酮 S/N 100:1
SIM:柱上 30fg 丁螺环酮 S/N 100:1
质量范围50 至 6000 m/z
最大分辨率m/z 200 时,高达240,000
类型四极杆 Orbitrap LC-MS
Unit SizeEach

常见问题解答 (FAQ)

Why is the turbomolecular pump not operating when using Orbitrap Exactive or Q Exactive mass spectrometry instruments?

A turbomolecular pump may be switched off because of one of the following reasons:

- Turbomolecular pump is blocked
- Failure of fans in turbomolecular pump
Each of the above reasons might lead to an overheating of the pump. When overheated, a turbomolecular pump switches off automatically to prevent its destruction. This overheating protection prevents the outbreak of a fire and minimizes the risk of destructing the pump.

If the Exactive Series mass spectrometer does not work as expected, use the Tune software for error diagnosis:
- The instrument status window displays real-time status information for the instrument components. All parameters are arranged in a tree view. In addition to showing numerical values of parameters (for example, pump speeds or component temperatures), the instrument status window uses icons to indicate the statuses of system components.
- The messages window displays real-time information about the statuses of the instrument, the control service, or other programs. It might display additional information.

In case of an overheated turbomolecular pump, shut down the mass spectrometer as described on page 6-8 of the manual (https://assets.thermofisher.com/TFS-Assets/CMD/manuals/man-bre0012255-exactive-series-manbre0012255-en.pdf). To prevent permanent damage to components of the Exactive Series mass spectrometer, Thermo Fisher Scientific recommends that you call a Thermo Fisher Scientific field service engineer.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

Why is the temperature of UHV chamber higher than expected when using Orbitrap Exactive or Q Exactive mass spectrometry instruments?

The UHV chamber heating control may have failed. During general operation of the mass spectrometer, the temperature of the UHV chamber is not regulated. Only during a system bakeout, electric power is supplied to the heating elements of the UHV chamber. The heating always operates at maximum power. Thus, failure of the heating control does not lead to a dangerous overheating of the mass spectrometer. If the Exactive Series mass spectrometer does not work as expected, use the Tune software for error diagnosis:

- The messages window displays real-time information about the statuses of the instrument, the control service, or other programs. If the heating was terminated, the window displays a corresponding error message.

In case of a failure of the UHV chamber heating control, shut down the mass spectrometer as described on page 6-8 of the manual (https://assets.thermofisher.com/TFS-Assets/CMD/manuals/man-bre0012255-exactive-series-manbre0012255-en.pdf). To prevent permanent damage to components of the Exactive Series mass spectrometer, Thermo Fisher Scientific recommends that you call a Thermo Fisher Scientific field service engineer.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

When using Orbitrap Exactive or Q Exactive mass spectrometry instruments, why does the tune software show bad vacuum?

Here are possible causes and solutions:
-System was vented because of a main power failure: A main power failure has the same consequence as switching off with the main power circuit breaker switch. If the power is available again, the system is started up automatically: the pumps are switched on and the vacuum is created. If the system has been vented during the mains failure, it is necessary to bake out the system to obtain the operating vacuum. See “Baking Out the System” on page 8-12 of the manual. If the log file of the data system shows a reboot of the system and the pressure reading in the Tune software shows a bad vacuum, this indicates that the system was vented. In case of frequent but short power failures, we recommend that you install an uninterruptible power supply (UPS). If main power failures occur frequently while the system is not attended (for example, in the night), we recommend that you install a power fail detector. - Vacuum leak: Refer to pages 7-5 and 8-12 in the Operator's Manual (https://assets.thermofisher.com/TFS-Assets/CMD/manuals/man-bre0012255-exactive-series-manbre0012255-en.pdf).

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

Why does the metal needle insert in the heated ESI probe frequently clog when using Orbitrap Exactive or Q Exactive mass spectrometry instruments?

Clogging of the H-ESI spray needle is generally caused by the presence of non-volatile components in the injected samples. If the non-volatile components of the samples are not removed during sample preparation, they will be injected onto the column where they will gradually bleed off over time into the detector. They may also be directly introduced by the use of non-volatile buffers in the mobile phase. Non volatile buffers should be avoided in LC-MS analysis because the spray needle will clog frequently and in addition the MS optics will quickly become contaminated.

Clogging issues may be worsened when using a divert valve or bypass valve. This is because when the valve switches to waste the LC flow to the needle is stopped, causing the residual liquid in the hot needle to quickly evaporate. This in turn causes the non-volatile components to deposit on the inner wall of the tubing which will eventually clog it.

When using a divert or bypass valve, the issue may be fully resolved by adding another HPLC pump to supply make-up flow through the needle when the column eluent is bypassed. The second pump is connected to the divert valve or bypass valve so that when the eluent is diverted to waste, clean solvent flows through the needle to help keep it clean. Alternatively, sample preparation procedures should be modified to reduce the amount of non-volatile components in each sample injection.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

What is High Energy Collision Dissociation (HCD) as it relates to Orbitrap Exactive or Q Exactive mass spectrometry instruments?

The HCD Cell consists of a straight multipole (octapole) device mounted within a metal tube. The metal tube is in turn connected to the C-Trap in direct line of sight.

The voltage offset between the C-Trap and the HCD Cell is used to accelerate the precursor ions into the gas filled cell. Inside the HCD cell, ions collide with the neutral gas causing rotation, stretching and ultimately cleaving bonds to create fragment ions and neutral species, which are subsequently removed by the vacuum system.

The generated fragment or product ions are then pushed back toward the C-Trap and focused before being pushed toward the Orbitrap analyzer.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.