Chapter Four · failure evidence

What X-Ray Photoelectron Spectroscopy (XPS) got wrong, from 16 dissertations

The records document experimental failures and methodological limitations encountered when applying X-ray photoelectron spectroscopy. Key difficulties include sample charging, beam and vacuum induced degradation, sputtering depth profiling limits, adventitious contamination, and core level peak overlaps. These records come from PhD theses at 9 institutions, 2021 to 2026. Each links to its thesis. They were extracted by language models reading the full text, so treat each as a lead to read, not a verdict.

Electrostatic sample charging distorts spectra and prevents acquisition on insulating materials

3 theses · 2 institutions

Severe sample charging and loss of conductivity prevented spectral acquisition on thick battery interphases and solid composite electrolytes despite charge neutralization. Differential charging on porous oxide layers produced severe peak distortions and abnormal binding energy positions.

Tried and failed

X-ray photoelectron spectroscopy surface characterization applied to thick insulating cycled battery interphases. Outcome: no signal. Reason: Severe sample charging and loss of electronic conductivity prevented spectral acquisition.

Localized high-concentration electrolytes for the simultaneous stabilization of lithium-metal anodes and high-nickel cathodes · UT Austin

Tried and failed

High-resolution X-ray photoelectron spectroscopy applied to porous metal oxide layers. Outcome: no signal. Reason: Severe peak distortion and abnormal positions caused by differential surface charging on porous oxide layers

Kinetics and heat transfer during crystallization of gas hydrates and ice · UT Austin

Tried and failed

synchrotron x-ray photoelectron spectroscopy with charge neutralization applied to insulating solid polymer-ceramic composite electrolytes. Outcome: no signal. Reason: severe sample charging effects persisted despite conductive bridging and charge neutralizers

Understanding Ion Conduction in Polymer-Ceramic Composite Electrolytes for Lithium Ion Batteries · MIT

Vacuum conditions and beam exposure cause sample degradation and volatilization

3 theses · 2 institutions

Ultra-high vacuum and electron beam exposure caused artifactual cation reduction in transition metal oxides as well as degradation and metallic lead segregation in perovskites. Volatile surface species on fluorinated organic powders also volatilized under ultra-high vacuum and risked instrument contamination.

Tried and failed

X-ray photoelectron spectroscopy with charge neutralization applied to high-valence transition metal oxides. Reason: High vacuum and flood gun electron beam exposure caused artifactual reduction of reducible transition metal cations

Redox stability and ionic conduction in donor-substituted LaNbo4 under hydrogen environments · Imperial

Tried and failed

X-ray photoelectron spectroscopy surface characterisation applied to fluorinated organic powder surfaces. Outcome: unstable. Reason: Surface species volatilised under ultra-high vacuum, risking instrument contamination.

Surface properties and the manufacturability of fine pharmaceutical powders · Imperial

Tried and failed

time-resolved photoemission spectroscopy under vacuum applied to hybrid organic-inorganic lead halide perovskites. Outcome: unstable. Reason: Severe beam- and vacuum-induced sample degradation and metallic lead segregation occurred at the surface.

Time- and Angle-Resolved Photoelectron Spectroscopy of Solar Materials · EPFL

Left open by the authors

Problems the authors named and did not get to.

Left open

Perform XPS compositional analysis on the <2 µm redeposition layer to identify valence states and the origins of excess oxygen and fluorine. Blocker: Requires physical etched samples and an XPS (X-ray photoelectron spectroscopy) lab apparatus.

Atmospheric pressure plasma etching of Ti-6Al-4V using SF₆ · Cranfield

Left open

Investigate the 10 ms to 10 s slow decay in v-Ta2O5 to determine if it is a secondary relaxation linked to Brownian noise. Blocker: Requires experimental X-ray photon correlation spectroscopy (XPCS) or specialized experimental data on v-Ta2O5 samples.

X-ray induced temperature dependent amorphous-amorphous transitions in the GeO2 glass · IRIS - UNITN - prod

Left open

Perform XPS measurements on scraped and pressed powders from nickel films to eliminate surface oxidation artifacts. Blocker: Requires a physical materials lab, nickel film samples, and an XPS apparatus

Photoluminescence and stability of perovskite-phase CsPbI₃ nanocrystals and development of nickel metal-organic decomposition inks · UT Austin

Left open

Investigate palladium oxidation and reduction intermediate states and processes in natural gas three-way catalysts using X-ray absorption spectroscopy (XAS). Blocker: Requires synchrotron X-ray absorption spectroscopy (XAS) physical facilities and wet lab catalyst synthesis/testing setups.

Emission reduction by targeted transient <delta> operations in three-way catalysts for heavy-duty natural gas applications · EPFL

Left open

Perform TEM-EDS elemental mapping to determine the distribution and dispersion of Ce and Mn species in the catalyst materials. Blocker: Requires access to synthesized catalyst samples and transmission electron microscopy energy-dispersive X-ray spectroscopy (TEM-EDS) instruments.

Selective oxidation catalysis over manganese and tungsten based oxide catalysts · Imperial

Left open

Combine electrochemical measurements of catalyst oxidation with FTIR, STM, HRTEM, and X-ray absorption spectroscopy. Blocker: Requires advanced physical characterization instruments and wet-lab electrochemical experimental facilities (FTIR, STM, HRTEM, XAS)

Electrochemical studies of carbon monoxide oxidation on platinum and platinum based fuel cell catalysts · Texas Tech

Left open

Use X-ray photoelectron spectroscopy to measure Fe2+/Fe3+ atomic ratios and identify ligands that increase Fe solubility in piperazine solutions. Blocker: Requires physical laboratory samples and an X-ray photoelectron spectroscopy (XPS) apparatus.

Mitigation methods for piperazine oxidation in post-combustion carbon capture · UT Austin

Left open

Conduct EXAFS measurements on the synthesized catalyst to verify the 5-coordination Pt structure following CO insertion. Blocker: Requires a synchrotron radiation facility / X-ray absorption spectroscopy beamline and physical catalyst samples

Noble metal atoms and clusters supported on metal-organic frameworks: Structure characterization and heterogeneous catalysis · Iowa State

Left open

Perform X-ray photoelectron spectroscopy on Ag57- nanoclusters to confirm their mixed-valence electronic state. Blocker: Requires synthesized Ag57- nanocluster samples and an X-ray photoelectron spectroscopy (XPS) instrument.

Controlling the Supramolecular Assembly and Photophysical Properties of Atomically Precise Metal Chalcogenide and Noble Metal Nanoclusters · Harvard

Left open

Investigate heterogeneous electrochemical and chemo-mechanical degradation at cathode-electrolyte interfaces using in-operando X-ray fluorescence microscopy combined with X-ray absorption spectroscopy. Blocker: Requires synchrotron beamline facilities, specialized in-operando XFM/XAS instrumentation, and physical thin-film solid-state battery samples.

Understanding and Controlling the Degradation Mechanisms at Cathode-Electrolyte Interfaces in All-Solid-State Lithium-Ion Batteries · MIT

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