01INTEGRATED NANOLC–MS INTERFACE

Control the interface.
Preserve the workflow.

An integrated interface architecture for the complete transition from NanoLC fluid delivery to controlled nanospray ion transfer—combining a tool-free fluid path, an enclosed quartz emitter and instrumented source control.

ZERO-DEAD-VOLUME PATHENCLOSED QUARTZ EMITTEROBSERVABLE NANOSPRAY
NanoLC and ioniFlux workstation with ioniFlux docked at the exposed ion-transfer interface of an Astral Zoom form mass spectrometer
ioniFluxCONTROLLED NANOSPRAY INTERFACE
CONCEPT CONFIGURATIONIONAE / NANOLC–MS
02NANOLC–MS INTERFACE ARCHITECTURE

One engineered pathway.
Four controlled transitions.

Fluid delivery, emitter positioning, nanospray formation and ion transfer are treated as one coordinated interface rather than isolated accessories.

01
NANOFLOW DELIVERYNANOFLOW DELIVERY
02
QUARTZ EMITTERQUARTZ EMITTER
03
NANOSPRAY CONTROLNANOSPRAY CONTROL
04
MSION TRANSFER
03INTERFACE COMPONENTS

Purpose-built for every interface transition.

ioniTube tubing with preassembled blue fingertight fittings
TOOL–FREEFINGERTIGHT CONNECTION
02 / FLUIDICS
04FLUIDICS / IONITUBE
TOOL–FREEFINGERTIGHT CONNECTION

Tool-free connection.
A continuous NanoLC fluid path.

ioniTube provides the dedicated fluidic route between the NanoLC outlet and the enclosed ioniTip emitter. Preassembled fingertight fittings allow direct hand installation while maintaining a clearly defined, zero-dead-volume connection architecture.

PRODUCT ADVANTAGES
01
Tool-free installation

Fingertight connection by hand—no wrench or separate installation tool required.

02
Zero-dead-volume architecture

A defined internal connection path designed without unnecessary interconnect volume.

03
Preassembled fluidic interface

Fittings are integrated with the tubing to simplify installation and component changeover.

04
Direct NanoLC-to-emitter routing

A dedicated clear fluid path connects the LC outlet directly to the protected emitter environment.

ioniTube product visualization · configuration shown without dimensional claims
05EMITTER / IONITIP

A protected quartz emitter
for controlled nanospray operation.

ioniTip is a dedicated nano spray emitter column installed completely inside ioniFlux. The quartz tip is positioned within the source environment for controlled alignment, thermal conditioning and direct optical observation—without protruding beyond the housing.

PRODUCT ADVANTAGES
01
Quartz nanospray emitter

A fine glass emitter geometry dedicated to nanospray formation at the column outlet.

02
Fully enclosed installation

The complete tip remains within the ioniFlux housing for protection during setup and operation.

03
Controlled source environment

The installed emitter is supported by the positioning and thermal-control functions of ioniFlux.

04
Direct optical observation

Tip alignment and spray state can be inspected through the illuminated macro-camera system.

ioniTip product visualization · no dimensional or performance claims
ioniTip quartz nanospray emitter with a sharp, slender transparent taper03 / EMITTER
06IONIFLUX / INSTRUMENTED NANOESI SOURCE

An instrumented environment
for NanoESI control.

ioniFlux integrates mechanical positioning, thermal conditioning, optical observation and protected source handling around the enclosed ioniTip emitter.

01

Coaxial emitter positioning

An internal linear guide supports controlled forward and retract movement toward the MS ion-transfer interface.

02

Integrated thermal zone

The emitter is operated within a managed heating environment with touchscreen status and control.

03

Macro imaging with illumination

An integrated camera and dedicated light source provide direct observation of the emitter and nanospray state.

04

Protected tip handling

A defined safe position and long-press screen lock help protect the emitter from unintended movement.

05

Retractable observation access

The sliding transparent window provides visual access while retracting into the housing when the interface is opened.

06

Instrument-side docking

The open source end is arranged for coaxial alignment with a confirmed MS ion-transfer interface configuration.

07APPLICATION WORKFLOWS

Designed for controlled
NanoLC–MS interfacing.

01

Proteomics

Nano-flow peptide separation coupled to mass spectrometry

02

Metabolomics

Low-flow chromatographic separation and MS transfer workflows

03

Biopharmaceutical analysis

NanoLC–MS characterization workflows for biotherapeutic samples

08THERMO COMPATIBILITY

Interface configurations for confirmed
Thermo Scientific platforms.

Compatibility documentation will identify validated instrument and interface configurations without implying universal model support.

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