Observe dynamic liquid-phase processes in real time with controlled microfluidic flow, nanometer resolution TEM/STEM imaging, integrated MEMS heating and biasing, and optional dual-inlet solution mixing

Enclosed Microfluidic Flow Cell for In-Situ TEM

The TEM Liquid Flow Sample Holder enables in-situ TEM and STEM imaging of nanoscale processes in controlled liquid environments. An enclosed microfluidic flow cell with electron-transparent silicon nitride (SiN) windows isolates the liquid-phase sample from the microscope vacuum while supporting static or continuous flow. A precision-engineered, screw-free loading and compression-sealing mechanism ensures reproducible liquid cell assembly and self-alignment of the imaging windows. The holder delivers near-drift-free imaging and supports microfabricated chips for MEMS heating, electrical biasing, and liquid electrochemistry, with an optional dual-inlet flow configuration for in-situ reagent mixing.

Built for Advanced Liquid-Phase TEM

Designed for researchers in materials science, chemistry, energy storage, catalysis, environmental science, and life sciences, the platform enables direct observation of nanoparticle nucleation and growth, crystallization, corrosion, electrochemical reactions, and solid–liquid and liquid–liquid interfacial processes that cannot be captured using conventional ex-situ characterization.

Reveal the Mechanisms Behind Material Behavior

Continuous liquid flow, rapid solution exchange, and optional dual-inlet mixing enable real-time observation of reactions from their earliest stages. Combined with MEMS heating, electrical biasing, and liquid electrochemistry chips, the holder correlates nanoscale structural evolution with thermal, electrical, and electrochemical responses to reveal the mechanisms governing material transformation, interfacial reactions, and device behavior.

TEM Liquid Flow Sample Holder

Hummingbird Advantages:

  • Features screw-free liquid-cell assembly with self-aligning windows for fast, reproducible sample loading.
  • Removable sample tip tip and fully user-replaceable tubing for easy cleaning and functional upgrades.
  • Maintain stable, near-drift-free nanoscale imaging during extended liquid-phase experiments.
  • Correlate nanoscale structural evolution with temperature, electrical biasing, or electrochemical measurements using compatible microfabricated chips.
  • Use the same liquid-flow tip across Hummingbird Scientific TEM, SEM, and X-ray microscopy platforms for consistent workflows and simplified cross-platform correlation.
  • Support diverse applications including nanoparticle growth, crystallization, catalysis, corrosion, electrochemistry, and biomaterials research.
Technical Specs
1400 Series
Number of Inlets
1 or 2 depending on model, single outlet
Biasing Contacts
4 on-chip
Tubing Type
User-replaceable microfluidic tubing
Delivery System
Variable speed pressure or flow-controlled liquid delivery system
Tip Type
Removable tip
Flow Type
Continuous flow or static liquid
EELS/EDS Compatible
Yes

Available For:

How it Works

The TEM Liquid Flow Sample Holder uses an enclosed microfluidic liquid cell to maintain a controlled liquid environment inside the high vacuum of the TEM. The liquid cell is formed by two silicon microchips with electron-transparent silicon nitride (SiN) windows that encapsulate a thin liquid layer while allowing the electron beam to pass through for nanoscale TEM and STEM imaging.

A precision-engineered, screw-free chip loading and compression-sealing mechanism ensures reproducible liquid cell assembly and self-alignment of the imaging windows, resulting in highly reproducible experiments. The holder is also compatible with specialized microfabricated chips for MEMS heating, electrical biasing, and liquid electrochemistry, enabling multiple in-situ techniques on the same liquid flow platform.

Liquid is delivered to the holder tip through replaceable flexible microfluidic tubing. The standard configuration supports both static and continuous liquid flow, while an optional dual-inlet configuration enables two independent solutions to mix immediately before the imaging region. Continuous flow refreshes the liquid environment during the experiment, enabling reagent exchange, removal of reaction by-products, and real-time observation of dynamic liquid-phase processes.

Image: a) TEM Liquid Flow Sample Holder, b) Liquid holder stand, c) Microfluidics syringe pump, d) High-vacuum pump, e) Seal checking station with integrated microscope, f) Liquid holder accessory kit, g) Optional thin film liquid heating controller.

Key Features and Capabilities

Reproducible Screw-Free Liquid-Cell Assembly

Achieve reproducible liquid-cell assembly with self-aligning windows and a screw-free sealing design

Removable, Swappable Tip and Tubing

Simplify cleaning with removable and upgradeable holder tips that allow user access for full tubing replacement

Flexible Liquid Cell Operation

Image samples in continuous-flow or static liquid environments using a sealed microfluidic chip assembly

Multimodal Imaging

Correlate electrochemical, heating, and imaging data across TEM, SEM, and X-ray microscopy platforms

Optimized for EELS and EDS

Perform correlative spectroscopy and microscopy for detailed in-situ elemental analysis

TEM Safety & Seal Verification

Protect your TEM during liquid-cell experiments and streamline setup with rapid high-vacuum seal checking and optical inspection

60+ In-Stock Liquid-Cell TEM Chip Configurations

Keep experiments moving with in-stock liquid-cell TEM chips designed for electrochemistry, liquid flow, heating, and multimodal microscopy workflows

Optional add-on feature
Integrated Liquid Heating

Add temperature-controlled liquid-phase TEM capabilities with homogeneous heating, precise temperature regulation, and near-drift-free in-situ imaging

Optional add-on feature
Dual-Flow Liquid Mixing

Accelerate discovery with dual-flow liquid mixing for in-situ liquid phase TEM, capturing dynamic liquid-liquid reactions with greater control and flexibility

Optional add-on feature
Biologic SP-200 Potentiostat

Expand the capabilities of the TEM Liquid Flow Sample Holder with the BioLogic SP-200 potentiostat for quantitative in-situ TEM electrochemistry

Featured Research

Direct imaging of phonon dynamics in self-assembled nanoparticle lattices using liquid-phase TEM

The Hummingbird Scientific TEM Liquid Flow sample holder enabled liquid-phase TEM imaging of self-assembled gold nanoparticle lattices to directly measure nanoscale phonon dynamics and lattice mechanics in solution. Using flowing liquid within a sealed microfluidic TEM environment, researchers tracked the thermally driven vibrations of gold nanocubes, nanorods, and nanoprisms with sub-nanometer precision, creating a phonon-mode nanoscopy (PMN) platform. The holder allowed real-time observation of particle motion, lattice reconfiguration, and collective phonon modes inaccessible by conventional techniques. By correlating nanoparticle trajectories with mechanical models, the study quantified phonon band structures, spring constants, and topological floppy modes, establishing self-assembled nanoparticle lattices as a new class of tunable mechanical metamaterials.

Reference: Chang Qian, et al. Nature Materials (2025). DOI: 10.1038/s41563-025-02253-3

Copyright © The Author(s), under exclusive licence toSpringer Nature Limited 2025.

Video Spotlight

Kirkendall effect in Ag nanocubes in solution with Au ions at 23 °C. Nanocubes become hollow via the nucleation, growth, and coalescence of voids formed by galvanic replacement.

Ag nanocubes undergo nanoscale galvanic replacement reactions at elevated temperature

The Hummingbird Scientific TEM Liquid Flow platform was used along with the heating add-on to confirm the nucleation, growth, and coalescence of voids inside Ag nanocubes due to the galvanic replacement (GR) reaction with Au introduced into the solution at different temperatures. The Ag nanocube suspension was drop cast onto the heater chip and sealed into the liquid cell. The Ag nanocubes were stable up to 90 °C during imaging, but once a solution containing Au ions was introduced into the cell via the liquid delivery system, the GR reaction initiates as low as 23 °C.

Hummingbird Advantage

  • Flexible synchronization of solution chemistry changes, temperature, and imaging
  • Stable, drift free imaging at elevated temperatures with short settling times
  • Mechanistic linkage between observed transformation and solution chemistry

See Wee Chee, et al, Nature Communications (2017). DOI: 10.1038/s41467-017-01175-2

Video Copyright © 2017 Macmillan Publishers Limited, part of Springer Nature

High Impact Publications

Trusted by researchers worldwide, the Hummingbird Scientific TEM Liquid Flow Sample Holder has contributed to 100+ peer-reviewed publications in Nature, Science, ACS Nano, Advanced Functional Materials, and other leading journals.

Ouzo Effect Examined at the Nanoscale via Direct Observation of Droplet Nucleation and Morphology

Maria A. Vratsanos, Wangyang Xue, Nathan D. Rosenmann, Lauren D. Zarzar, Nathan C. Gianneschi

ACS Central Science

2023
Liquid cell scanning transmission electron microscopy characterization of combined chemical and electrochemical reduction of palladium

A.C. Meng, R. Serra-Maia, K.-B. Low, H. Lang, E.A. Stach

Materials Today Nano

2023
In-situ iron corrosion in brine using TEM

Surabhi Agrawal, Mobbassar H. Sk, Richard M. Langford, Stuart M. Clarke

MRS Advances

2023
Directing polymorph specific calcium carbonate formation with de novo protein templates

Fatima A. Davila-Hernandez, Biao Jin, Harley Pyles, Shuai Zhang, Zheming Wang, Timothy F. Huddy, Asim K. Bera, Alex Kang, Chun-Long Chen, James J. De Yoreo, David Baker

Nature Communications

2023

Software

Spend less time managing equipment and more time generating results. Hummingbird Connect integrates with microscope and laboratory software platforms to simplify experiment setup, streamline workflows, and keep your data organized from acquisition through analysis.

To help you get the most from your liquid-cell holder, Hummingbird Control Software provides intuitive and precise control of closed loop liquid heating. Together, these software solutions enable faster setup, improved reproducibility, and more efficient liquid-phase and electrochemical TEM experiments.

Built on Engineering Excellence

Hummingbird Scientific designs, machines, assembles, tests, and services its products in-house. Our integrated engineering, machining, microfabrication, software development, and applications teams enable rapid prototyping and iteration, custom modifications, and direct technical support throughout the life of the instrument. This vertically integrated approach allows researchers to adapt experimental platforms to unique scientific requirements while maintaining the performance and reliability required for advanced in-situ microscopy experiments.

The TEM Liquid Flow Sample Holder is a direct result of these capabilities, enabling reproducible in-situ liquid-phase imaging with optional MEMS heating, electrical biasing, electrochemistry, and dual-inlet liquid mixing on a single platform.

Need something unique? Our engineers can customize existing products or develop entirely new solutions to support specialized experiments and emerging research challenges.

Frequently Asked Questions

What is a TEM Liquid Flow Sample Holder?
What types of experiments can be performed with the TEM TEM Liquid Flow Sample Holder?
What liquid flow configurations are available for the TEM Liquid Flow Sample Holder?
Is the TEM Liquid Flow Sample Holder compatible with multimodal imaging workflows?
How is the liquid cell assembled in the TEM Liquid Flow Sample Holder?
How is the liquid flow controlled in the TEM Liquid Flow Sample Holder?
What does the software do in an in-situ electron microscopy experiment?
Can EDS and/or EELS be performed during in-situ experiments using the TEM Liquid Flow Sample Holder?

Awards

FLC Award for Excellence in Technology Transfer

Federal Laboratory Consortium
2011
FLC recognized ERDC-CERL’s collaboration with Hummingbird Scientific on in situ liquid TEM holder technology, including the Liquid Flow Holder.

Tibbetts Award

Small Business Administration
2011
Hummingbird Scientific has received a Tibbetts Award from the Small Business Administration (SBA) for the development of a commercially available system—the Liquid Flow Holder—for nanoscale imaging of materials in controlled fluid environments inside the transmission electron microscope.

Microscopy Today 2012 Innovation Award

Microscopy Today
2012
The 2012 Microscopy Today Innovation Award recognized a multimodal electrochemical TEM probe developed in collaboration with Hummingbird Scientific and a team of researchers, inlcuding EMSL scientist Chongmin Wang.
TEM Liquid Flow
Technical Specs
1400 Series
Number of Inlets
1 or 2 depending on model, single outlet
Biasing Contacts
4 on-chip
Tubing Type
User-replaceable microfluidic tubing
Delivery System
Variable speed pressure or flow-controlled liquid delivery system
Tip Type
Removable tip
Flow Type
Continuous flow or static liquid
EELS/EDS Compatible
Yes
Instrument Type
TEM

Available For:

Full Product Information
Product Specifications
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Biologic SP-200 Potentiostat
Dual-Flow Liquid Mixing
Integrated Liquid Heating