INSTRUMENT COMPARISON
Understanding the characteristics and purpose of each instrument clarifies consumable selection.
HANDLING & PREPARATION
Prevent specimen contamination and instrument damage through proper handling.
Mounting & Handling Precautions
Conductive Adhesive & Paint Application
Conductive Coating & Charging Prevention
Non-conductive specimens such as polymers, ceramics, and biological samples cause charging when exposed to the electron beam, resulting in blurred or distorted images. A conductive coating creates a surface conduction path to prevent this.
SAMPLE PREPARATION WORKFLOW
Standard sample preparation process for optimal SEM·FIB analysis results.
Cleaning & Fixation
Remove contaminants from the specimen surface and stabilise for subsequent steps.
Drying
Completely remove residual moisture and solvents to minimise outgassing.
Sample Mounting
Secure the specimen to the Al Stub and establish a conductive path and observation conditions.
Sputter Coating
Form a metal thin film on non-conductive specimens to prevent charging.
Storage
Safely protect specimens from contamination and oxidation before and after analysis.
TEM GRID HANDLING & STORAGE
TEM grids are extremely delicate consumables. Proper handling and storage determines specimen quality.
Handling Precautions & Procedures
Storage Method & Transportation
TEM GRID MATERIAL GUIDE
Selecting the appropriate grid material based on analysis purpose and sample characteristics improves data reliability.
Are you performing EDS (elemental analysis)?
YES → Choose a grid material different from the elements present in your specimen.
Example: copper alloy specimen → recommend Ni or Mo grid
Performing complex chemical treatment or staining?
YES → Choose Ni (nickel) or Au (gold), which are resistant to acids and solvents.
Cu may react with reagents and produce noise.
FIB milling or high-temperature heating experiment?
YES → Mo (molybdenum), with no thermal deformation and high rigidity, is essential.
TROUBLESHOOTING
Common symptoms, causes, and solutions encountered in the field.
SYMPTOM
Image brightens/washes out or shakes (Charging)
CAUSE
No conductive path, missing coating or broken paint bridge
SOLUTION
Re-apply carbon paint bridging between specimen and stub, check conductive coating thickness, reduce accelerating voltage (e.g. 1–5 kV)
SYMPTOM
Image drifts to one side at high magnification (Drift)
CAUSE
Unstable specimen fixation, paint/tape outgassing, thermal non-equilibrium
SOLUTION
Secure firmly with lower centre of mass, load instrument only after paint fully cures, wait a few minutes to stabilise before imaging
SYMPTOM
Unexpected peaks detected in EDS spectrum
CAUSE
Ag peak from silver paint, Au/Pd coating peak, tape adhesive components
SOLUTION
Switch to carbon-based paint/coating for elemental analysis, exclude coating elements from analysis targets
SYMPTOM
TEM grid support film is torn or wrinkled
CAUSE
Excessive tweezer grip pressure, strong air blowing, incorrect pickup direction
SOLUTION
Grip only the edge with Style 5 precision tweezers, avoid air blowing, consistently handle with film side facing up
SYMPTOM
Specimen/stub surface discolouration or corrosion
CAUSE
Storage in high-humidity environment, salt/oil residue from bare-hand contact
SOLUTION
Store in desiccator (≤30–40%RH), include desiccant, always use gloves and tweezers
Safety requirements that must be observed when handling analytical instrument consumables.
Volatile Solvents & Outgassing
Sharp Tools & Blades
Static Electricity & High Voltage
FIB Ion Beam Safety
FAQ
The most commonly asked questions from our customers.