Chapter Four · failure evidence

What Catalytic Degradation & Redox Cleavage got wrong, from 33 dissertations

The records describe various challenges encountered in catalytic degradation and redox cleavage processes across environmental, synthetic, and polymer applications. Many attempts failed due to catalyst deactivation, recalcitrant chemical bonds, unwanted side reactions, and suboptimal reactor or material configurations. These records come from PhD theses at 21 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.

Catalysts and molecular photooxidants suffer from deactivation and self degradation during redox operation

6 theses · 5 institutions

Catalytic systems often fail because active materials, molecular photooxidants, and immobilization linkages degrade or detach under oxidative and photoelectrochemical conditions. High excitation intensity, reactive oxidants, or harsh operating environments accelerate catalyst deactivation and prevent sustainable long term performance.

Tried and failed

increasing excitation intensity to improve quantum yield applied to heterogeneous photocatalytic charge accumulation. Outcome: worse than baseline. Reason: optical saturation and catalyst photodegradation at high fluence

Spectroelectrochemical studies of multi-redox catalysts for water splitting · Imperial

Tried and failed

homogeneous metal-complex photocatalyst degradation applied to pharmaceutical pollutant removal in water. Outcome: unstable. Reason: rapid catalyst deactivation and lack of recyclability during photocatalytic reaction

COVALENT ORGANIC FRAMEWORKS CONTAINING CU(I) COMPLEX FOR PHOTOCATALYTIC DEGRADATION OF PHARMACEUTICALS AND PERSONAL CARE PRODUCTS IN WATER · Cornell

Considered and rejected

Considered and rejected: Discarded persulfate flash-quencher systems with tethered nanoparticle-photooxidants due to persulfate-mediated oxidative degradation of the organic photooxidant.

Development and Study of Heterogeneous Earth-Abundant Oxygen Evolving Catalysts for Use in Diverse Electrolyte Environments · Harvard

Tried and failed

tethering molecular photooxidants to metal oxide catalysts applied to photoelectrochemical water oxidation. Outcome: unstable. Reason: dye molecules detached under operating conditions and underwent oxidative degradation rather than driving catalysis

Development and Study of Heterogeneous Earth-Abundant Oxygen Evolving Catalysts for Use in Diverse Electrolyte Environments · Harvard

Lost to a baseline

Mixed-metal and Fe-based catalysts (NiFe2O4, NiCoO2, Ni0.5Co0.5Fe2O4) had much higher overpotentials and degradation rates than baseline IrO2 (and Co3O4) in pure-water MEAs despite being superior in 3-electrode alkaline liquid cells

Advancing Anion-Exchange-Membrane Water Electrolyzer Devices: Catalyst Layer Interactions, Degradation Pathways, and Operational Development · Scholars' Bank

Lost to a baseline

CuAg catalyst prepared by electrodeposition (CuAgdep/Cu) exhibited faster activity degradation (-0.146 vs -0.044 degradation rate slope) and physical detachment compared to galvanically prepared CuAgglv/Cu.

Profitable and sustainable use of biomass in developing technologies · Iowa State

Tried and failed

covalent catalyst immobilisation via amide linkages applied to electrochemical biomass oxidation. Outcome: unstable. Reason: amide linkages underwent hydrolytic cleavage under anodic oxidation potentials

Catalysis of electrochemical biomass valorisation · Imperial

Targeted chemical and redox bond cleavages trigger unintended side reactions and decomposition

7 theses · 6 institutions

Attempts to cleave specific double bonds, rings, or aryl linkages frequently result in substrate decomposition or undesired carbocation fragmentations. Competing processes such as secondary self-metathesis, radical cyclization, and resinification prevent selective formation of the desired cleavage products.

Tried and failed

oxidative cleavage of exocyclic double bonds applied to strained bicyclic olefins. Outcome: unstable. Reason: leads to undesired carbocation fragmentation pathways instead of the cleaved product

Aminative Functionalizations of 1,3-Dienes and Total Synthesis of Crokonoid A · EPFL

Tried and failed

olefin cross-metathesis with symmetrical internal alkenes applied to long-chain polyunsaturated lipid cleavage. Reason: competing secondary self-metathesis occurred despite large excess of cleavage reagent

Monitoring changes to alkenone biosynthesis in commercial Tisochrysis lutea Microalgae · Woods Hole

Tried and failed

electrochemical or halogen-mediated oxidative ring expansion applied to cyclopropanols and cyclopentanols. Outcome: did not generalise. Reason: afforded destructive ring cleavage or complex decomposition instead of expansion

The discovery and application of metal-free cyclobutanol ring expansion reactions · Imperial

Tried and failed

Oxazolidine ring cleavage applied to spirocyclic oxazolidine-cyclopropane derivatives. Outcome: unstable. Reason: cleavage attempts led solely to unreacted starting material or substrate decomposition

Stereoselective palladium-catalyzed carboetherification of cyclopropenes via a tethering strategy · EPFL

Considered and rejected

Considered and rejected: Rejected standard strong acid cleavage (HCl, HBr, HI, TFA, H2SO4) of alkoxymethoxyphenyl ethers due to resinification and tar formation.

DESIGN OF NOVEL NUCLEAR SUBSTITUTED STYRYL KETONES. EVALUATION FOR ANTITUMOR, CYTOTOXIC AND ANTIMICROBIAL ACTIVITIES · HARVEST

Considered and rejected

Considered and rejected: Rejected using degradation/oxidation reactions for hydrocarbon structure determination because degradation frequently induces intermolecular terpene rearrangements

A Study of the Addition Reactions of the Lower Boiling Fraction of East Texas Cedar · TXST Digital Repository

Tried and failed

one-electron reductive cleavage of radical cations applied to biaryl radical cations. Reason: promoted intramolecular cyclization to furan derivatives instead of cleaving to monomers

PARTIAL ISOTOPIC LABELING ENABLES DIRECT (LC-)MS ANALYSIS OF REGIOISOMERS AND INSIGHT ON KINETIC ISOTOPE EFFECTS · Penn

Heterogeneous photocatalytic degradation is constrained by light scattering and active site accessibility

5 theses · 5 institutions

Increasing catalyst loading or immobilizing powders into thin films impairs degradation rates through optical self-screening, light scattering, and mass transfer limitations. Furthermore, complex heterogeneous formulations often perform worse than homogeneous oxidation or uncatalyzed photolysis baselines.

Tried and failed

increasing heterogeneous photocatalyst loading applied to photocatalytic pollutant degradation in water. Outcome: worse than baseline. Reason: excess suspended catalyst particles cause light scattering and self-screening, reducing photon absorption efficiency

COVALENT ORGANIC FRAMEWORKS CONTAINING CU(I) COMPLEX FOR PHOTOCATALYTIC DEGRADATION OF PHARMACEUTICALS AND PERSONAL CARE PRODUCTS IN WATER · Cornell

Tried and failed

thin film deposition of porous powders applied to photocatalytic pollutant degradation. Outcome: worse than baseline. Reason: immobilization into film reduced active surface area and mass transfer compared to dispersed powder

Recent Advances in Conjugated Microporous Polymers for Photocatalysis: Mechanism, Synthesis and Applications. · Cambridge

Tried and failed

photocatalytic degradation without metal coordination sites applied to organic pollutant degradation in water. Outcome: worse than baseline. Reason: removal of catalytic copper coordination centers severely suppressed photocatalytic degradation activity

COVALENT ORGANIC FRAMEWORKS CONTAINING CU(I) COMPLEX FOR PHOTOCATALYTIC DEGRADATION OF PHARMACEUTICALS AND PERSONAL CARE PRODUCTS IN WATER · Cornell

Lost to a baseline

Pristine TiO2 outperformed the optimal B/N-graphene/Cu/TiO2 hydrogen evolution photocatalyst in aqueous 2-chlorophenol degradation.

Development of porous material dual-functional reactors for the facile synthesis of sustainable chemicals · Leibniz Universität Hannover Repository

Lost to a baseline

Photocatalytic degradation of Dotarem using TiO2 (k = 1.45 x 10^-5 L g^-1 s^-1) had a lower second-order rate constant than uncatalyzed UVC photolysis (k = 2.10 x 10^-5 L g^-1 s^-1).

Preparación de materiales para el tratamiento de gadoterato de meglumina · Repositorio Institucional BUAP

Lost to a baseline

Homogeneous catalytic oxidation of DES using FeCl3·6H2O/H2O2 at pH 2.6 achieved 100% degradation in 2 hours, whereas the heterogeneous catalyst required 160 minutes.

Novel Heterogeneous Catalyst in the Oxidation of Sulphur Compounds · De Montfort Open Research Archive (DORA)

Cleavage extent in polymer networks and biomass is difficult to control

4 theses · 3 institutions

Chemical degradation of polymer networks and biopolymers often results in incomplete dissolution because cleavage remains confined to specific crosslinks without sufficient backbone breakdown. Conversely, excessive residence times or overly aggressive cleavage catalysts cause uncontrolled over-cracking, severe carbohydrate degradation, and unwanted methane production.

Tried and failed

aminolysis-based chemical degradation of crosslinked polymer networks applied to trithiocarbonate-crosslinked photopolymer resins. Reason: cleavage of trithiocarbonates in the network caused swelling and decoloration but insufficient backbone degradation for dissolution

Control of Network Topology in Photopolymer Networks for Additive Manufacturing · MIT

Lost to a baseline

Ru/C achieved higher mass-specific C-C bond cleavage rates (cleaving more total bonds) than mSiO2/Pt/MCM-48, but suffered from high methane generation (producing ~0.070 g methane from 0.63 g LDPE).

Unlocking the potential of waste polyolefins: Exploring architecture-mediated chemical upcycling strategies for polyolefin conversion to value-added products · Iowa State University Digital Repository

Considered and rejected

Considered and rejected: Rejected acid-catalyzed polysaccharide esterification due to random backbone degradation via glycosidic cleavage and interchain ester crosslinking.

Mixed Polysaccharide Esters for Amorphous Solid Dispersion Oral Drug Delivery Vehicles · Virginia Tech

Considered and rejected

Considered and rejected: Rejected batch solvolysis at 250 °C because prolonged residence times caused severe carbohydrate degradation (glucan/xylan retention dropped to 63.5% and 43.3%) and reactor wall charring.

Selective conversion of lignin derivatives to drop-in petrochemical intermediates through molybdenum oxide-based catalysts · Iowa State University Digital Repository

Fluorinated compounds exhibit thermodynamic and kinetic recalcitrance against oxidative degradation

3 theses · 1 institutions

Perfluorooctanoic acid and related fluorinated degradation intermediates resist breakdown due to positive free energy barriers and high activation energies for radical oxidation and hydrolysis. In addition, low-voltage electrochemical systems fail to supply sufficient potential to generate the surface holes and radicals necessary to overcome this recalcitrance.

Tried and failed

microbially driven Fenton reaction applied to perfluorooctanoic acid degradation. Outcome: no signal. Reason: PFOA was recalcitrant to hydroxyl radical oxidation with 98% remaining after four cycles

Molecular mechanisms of microbial pathways for environmental contaminant remediation · Georgia Tech

Tried and failed

aqueous hydrolysis pathway applied to perfluorinated alcohol degradation intermediate. Reason: thermodynamically unfavorable with positive free energy change and high activation barrier

Development of electrochemical methods for the oxidation and reduction of halogenated organic compounds · Georgia Tech

Tried and failed

hydroxyl radical mediated degradation pathway applied to perfluorinated alcohol mineralization. Reason: Reaction was thermodynamically unfavorable with positive free energy change and high activation barrier.

Development of electrochemical methods for the oxidation and reduction of halogenated organic compounds · Georgia Tech

Tried and failed

low-voltage electrochemical oxidation with metal-oxide anodes applied to perfluorinated pollutant degradation. Outcome: no signal. Reason: applied cell voltage was insufficient to excite reactive surface holes and radicals for oxidation

The Development of Energy Efficient Wastewater Treatment: Electrochemical Oxidation and PFACs liquid-liquid Extraction · Georgia Tech

Left open by the authors

Problems the authors named and did not get to.

Left open

Develop complete chemical recycling protocols for PDHF using accelerated Fenton's reagent oxidative degradation into oligomers or small molecules. Blocker: Requires a wet chemistry laboratory and physical chemical reagents (Fenton's reagent, PDHF polymer samples).

PRODUCTION OF SUSTAINABLE THERMOPLASTICS AND THERMOPLASTIC ELASTOMERS THROUGH CONTROLLED CATIONIC POLYMERIZATIONS · Cornell

Left open

Apply microbially driven Fenton reaction to partially fluorinated polyfluorinated compounds like fluorotelomer alcohols for degradation testing. Blocker: Requires wet lab microbial culture facilities, chemical reagents, and analytical instrumentation for PFAS degradation experiments

Molecular mechanisms of microbial pathways for environmental contaminant remediation · Georgia Tech

Left open

Incorporate ion implantation, diffusion, and cohesive degradation damage parameters into the thermo-mechanical finite element erosion model. Blocker: Lacks access to the custom coupled FE simulation codebase described in the thesis.

A plasma-wall interaction model for the erosion of materials under ion bombardment · Georgia Tech

Left open

Differentiate enzymatic from nonenzymatic degradation pathways by analyzing biomolecular fungal sequencing data for manganese peroxidase expression versus Fenton-reaction markers. Blocker: Requires collecting fungal biomolecular sequencing data from specific experimental redox-dynamic water samples.

MULTI-MODAL SYNCHROTRON-BASED INVESTIGATIONS INTO ORGANOMINERAL INTERACTIONS IN REDOX-DYNAMIC WATER SYSTEMS · Cornell

Left open

Synthesize and test alternative stabilizers to atomically dispersed Pt for mitigating Fe-N-C catalyst degradation from Fenton reactions. Blocker: Requires a wet-chemistry synthesis and electrochemical testing laboratory.

Atomic iron in nitrogen-doped carbon electrocatalysts for proton exchange membrane fuel cells · Imperial

Left open

Extend ABAQUS FE models of EB-FRP strengthened RC beams to incorporate interface fracture mechanics and environmental degradation effects. Blocker: Lack of specific interface constitutive models, environmental exposure parameters, or experimental calibration data in the thesis description

Improvement on Design of RC Beams Strengthened in Shear with Externally Bonded FRP Composites · Texas Tech

Left open

Perform enzymatic degradation experiments on 6:2 FTCA, 6:2 FTS, and 7:3 FTCA in soil slurries or co-contaminant mixtures using citrate-phosphate buffer conditions. Blocker: Requires a wet chemistry/biology lab, physical PFAS compounds, soil slurries, and analytical instruments (LC-MS/MS).

Potential of a laccase-1-hydroxybenzotriazole system from Trametes versicolor to degrade per- and polyfluoroalkyl substances · Queens University Institutional Repository

Left open

Investigate the degradation mechanism of porous BN and the effect of P functionalisation during photocatalytic CO2 reduction. Blocker: Requires a wet chemistry lab, materials synthesis, and in-situ/operando photocatalysis characterization equipment

Investigating the effect of nonmetal functionalisation on the chemical, sorptive, optoelectronic and photocatalytic properties of semiconducting boron and carbon nitride materials · Imperial

Left open

Evaluate alternative activated carbons and ion exchange resins to measure adsorption rates and selectivity for piperazine degradation and corrosion products. Blocker: Requires wet lab equipment and experimental facilities to test chemical adsorption with hazardous solvents

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

Left open

Investigate photoactivities of thin-film CeVO4/gamma-Al2O3 for organic pollutant degradation or ammonia reduction. Blocker: Requires experimental chemistry wet lab, photocatalytic testing equipment, and ALD synthesis apparatus

INVESTIGATION OF THIN-FILM CERIUM-BASED OXIDES AND SINGLE ATOM CATALYSTS PREPARED BY ATOMIC LAYER DEPOSITION · Penn

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