Chapter Four · failure evidence

What Nanoparticle Synthesis & Doping got wrong, from 59 dissertations

The records document various synthesis and doping failures encountered during nanoparticle and nanomaterial fabrication. These issues span colloidal agglomeration, thermal degradation, structural phase segregation from overdoping, and processing incompatibilities in composite matrices. These records come from PhD theses at 23 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.

Colloidal instability and uncontrolled nanoparticle aggregation degrade material structure and dispersion

14 theses · 8 institutions

Nanoparticles frequently aggregate out of suspension due to missing capping ligands, poor electrostatic stabilization, or improper solvent conditions. This uncontrolled agglomeration causes severe pore blocking, non-uniform film deposition, and mechanical instability across different substrates.

Tried and failed

increasing plasmonic nanoparticle loading in heterostructures applied to photoelectrochemical water splitting photoanodes. Outcome: worse than baseline. Reason: nanoparticle aggregation and optical coupling disrupted uniform shell coating, degrading overall photoelectrochemical performance

Plasmonic enhancement of nanostructured composites containing zif-67 for photoelectrochemical water splitting · Imperial

Considered and rejected

Considered and rejected: Rejected physical blending of nanoparticles directly into casting solutions because nanoparticle aggregation caused poor dispersion, pore defects, and entrapment within the polymer matrix.

Membrane Surface Functionalization Through Nanomaterials for Wastewater Treatment · oURspace

Considered and rejected

Considered and rejected: Rejected commercialized NiO paste and raw NiO nanopowders for mesoporous HTL because particle aggregation (up to 800 nm-1 µm) prevented uniform film coverage; replaced with synthesized 20 nm NiO nanoparticles

Fabrication and characterization of lead-free and lead based perovskite solar cells · Imperial

Considered and rejected

Considered and rejected: Rejected nanocomposites of TiO2/SiO2/CdS nanoparticles blended with polymers due to particle aggregation and high scattering/optical loss, choosing coordinated molecular hybrids instead.

Elucidating exciton-polaritons in organic and two-dimensional metal halide semiconductors · Georgia Tech

Tried and failed

EDC carbodiimide crosslinking of colloidal nanoparticles applied to surface conjugation to functionalized nanowires. Outcome: unstable. Reason: carboxylic acid-functionalized quantum dots aggregated out of solution during crosslinking

Design and Characterization of Hybrid Biological-Inorganic Systems · Harvard

Tried and failed

antisolvent precipitation using bad solvent for polymer shell applied to block copolymer templated nanocrystal synthesis. Reason: Insolubility of the polymer shell in the antisolvent caused precursor aggregation rather than colloidal nanoparticle formation

Continuous Production and Improved Stabilities of Luminescent Colloidal Perovskite Nanocrystals as Next-Generation Emitters · Georgia Tech

Tried and failed

nanocrystal synthesis without shape-directing ligand applied to supported bimetallic alloy nanoparticles. Outcome: unstable. Reason: absence of capping agent caused irregular particle morphology and severe agglomeration

Platinum-Based Nanocrystals and Their Use as Electrocatalysts toward Oxygen Reduction · Georgia Tech

Tried and failed

electrostatic adsorption of small highly charged peptides applied to layer-by-layer core-shell nanoparticles. Outcome: unstable. Reason: low layering ratios of small charged peptides induced particle bridging and aggregation

Peptide-Functionalized Layer-by-Layer Nanoparticles Demonstrate Improved Blood Brain Barrier Permeability for Glioblastoma Treatment · MIT

Tried and failed

drop casting nanoparticles for conformal coating applied to vertically aligned high-aspect-ratio nanotube arrays. Reason: nanoparticles aggregated at the tips instead of penetrating, blocking ion transport

Design, Fabrication, and Characterization of Nanostructured Pseudocapacitive Coatings on Vertically Aligned Carbon Nanotube Electrodes for High Performance 3D Microsupercapacitors · Georgia Tech

Tried and failed

co-encapsulating oppositely charged nanoparticles applied to vesicle lumen compartmentalisation. Outcome: unstable. Reason: mutual electrostatic aggregation and charge neutralisation between the particle populations

Dynamic control of compartmentalisation in artificial cell models · Imperial

Considered and rejected

Considered and rejected: Rejected commercial Cu, Cu2O, and ZnO nanoparticles due to massive agglomeration and chemical instability during drying

Wpływ przepływu mikrofluidycznego oraz nanocząstek metalicznych na właściwości amyloidogenne ludzkiej cystatyny C The Influence of Microfluidic Flow and Metallic Nanoparticles on the Amyloidogenic Properties of Human Cystatin C · AMUR - Repozytorium Uniwersytetu im. Adama Mickiewicza w Poz

Considered and rejected

Considered and rejected: Rejected increasing T-mixer diameter beyond 0.02 inch to produce larger nanoparticles due to particle agglomeration.

Continuous microreactor synthesis of size-controlled Ru nanoparticles to probe support and size effects in ammonia cracking · Cambridge

Considered and rejected

Considered and rejected: Rejected direct carbonization of Ag@PDA without a SiO2 protective shell because nanoparticles sintered and agglomerated during thermal annealing at 700 °C.

Active sites on copper-based catalysts for electrochemical CO2 reduction selectively to C2+ products · EPFL

Tried and failed

high metal-oxide nanoparticle loading in carbon nanocomposite inks applied to printed microsupercapacitor electrodes. Outcome: worse than baseline. Reason: nanoparticle clustering severely degraded electrochemical capacitance compared to additive-free electrodes

Additive Fabrication of Microsupercapacitors · EPFL

Dopant incorporation introduces carrier traps, disrupts bonding networks, and impairs electronic properties

8 theses · 6 institutions

Chemical doping often generates deep midgap trap states that quench photoresponse and hinder catalytic charge transfer. Furthermore, foreign dopant atoms disrupt host crystal or polymer bonding networks, shifting chemical potentials and diminishing carrier mobility.

Tried and failed

nonmetal doping with phosphorus applied to semiconductor photocatalysts. Outcome: worse than baseline. Reason: deep midgap states acted as electron traps rather than facilitating catalytic charge transfer

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

Tried and failed

transition metal oxide high-concentration surface doping applied to semiconductor photoanodes for pollutant degradation. Outcome: worse than baseline. Reason: excessive loading lowered the valence band redox potential too much, reducing oxidation capacity

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

Tried and failed

sol-gel Pechini transition metal co-doping applied to semiconductor photocatalysts. Outcome: no signal. Reason: insufficient suppression of high-valence dopant trap states that quench photoresponse

Study of the effect of d-block and p-block dopants on material and photocatalytic properties of srtio3 · Imperial

Lost to a baseline

Bi2Ti2O7 photocatalytic activity was degraded after doping/alloying with Fe3+ or Mn2+ compared to pristine SCS-synthesized Bi2Ti2O7

Solution combustion synthesis: the relevant metrics for producing advanced and nanostructured photocatalysts · Oxford

Considered and rejected

Considered and rejected: Rejected conventional dry etching or laser writing doping for P3CPT patterning due to severe degradation of polymer electronic properties.

Liquid gated organic devices for sensing applications: from transistors to single molecule break junctions · IRIS - POLITO - prod

Considered and rejected

Considered and rejected: Rejected chemical doping as the disorder-tuning method because it shifts the chemical potential and alters lattice constants/electronic structures.

Study of superconductivity in quantum materials using controlled disorder · Iowa State

Considered and rejected

Considered and rejected: Rejected direct substitutional doping of CNT lattice because it disrupts sp2 bonding, increases scattering, and reduces carrier mobility.

A Manufacturing Methodology for Carbon Nanotube-based Digital Systems: from Devices, to Doping, to System Demonstrations · MIT

Lost to a baseline

CCD of unheated MOS PBM GSEs (0.1–0.3 mA·cm^-2) was inferior to pure sulfide PBM glass baseline (1.5 mA·cm^-2) due to oxygen doping suppressing reactive Si-S

Studies on mixed oxy-sulfide and mixed oxy-sulfide-nitride lithium glassy solid-state electrolytes · Iowa State

High processing temperatures trigger dopant loss, structural damage, and uncontrolled sintering

8 theses · 4 institutions

Thermal treatments cause volatile dopant precursors to sublime and drive unwanted crystal phase transformations. In addition, high-temperature calcination and sintering processes degrade nanoparticle structures, increase particle sizes beyond functional limits, or leave them arrested in irregular shapes.

Tried and failed

thermal diffusion doping applied to semiconductor photocatalyst preparation. Outcome: worse than baseline. Reason: induced complete rutile phase transformation and dopant evaporation during high-temperature processing

Engineered Sn doped TiO2 bifunctional catalyst for improved hetero-photocatalytic oxidation of arsenite in water · Imperial

Tried and failed

transition metal doping with high-temperature calcination applied to photocatalytic nitrogen reduction. Outcome: worse than baseline. Reason: high-temperature calcination of metal dopants lowered photocatalytic activity compared to undoped material

Influence of Carbon and Oxygen for Photocatalytic Nitrogen Fixation on Titania · Georgia Tech

Tried and failed

High-temperature chemical anion doping applied to oxide nanoparticle electrocatalysts. Outcome: worse than baseline. Reason: Severe structural degradation of nanoparticles led to reduced oxygen evolution reaction activity

Polymer-Ligated Nanocrystals with Tunable Dimensions, Compositions, and Architectures · Georgia Tech

Tried and failed

direct thermal synthesis doping with volatile precursors applied to high-temperature ceramic semiconductor synthesis. Outcome: no signal. Reason: dopant precursors sublimed below the synthesis temperature required for host lattice formation

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

Tried and failed

electron beam-induced coalescence applied to large metallic nanoparticles. Outcome: did not converge. Reason: larger nanoparticles become arrested in metastable non-spherical shapes due to insufficient energy for complete sintering

In situ TEM investigation on the beam-driven mechanisms of Ag/Au nanoparticles at room temperature · Imperial

Tried and failed

in situ metal nanoparticle sintering on 2D substrates applied to conductive polymer nanocomposite curing. Reason: Nanoparticle agglomeration increased particle size and melting temperature above the matrix curing threshold

High Thermal Conductivity Epoxy Composites In The Application Of 3D Semiconductor Packaging · Georgia Tech

Tried and failed

thermal, plasma, and electrical sintering applied to patterned nanoparticle structures in collapsed hydrogels. Reason: failed to produce well-preserved, evenly sintered conductive silver structures

Implosion Fabrication: Rethinking 3D Nanofabrication from First Principles · MIT

Considered and rejected

Considered and rejected: Rejected vapor deposition for doping due to large boiling point differences between ThF4 and CaF2 causing high dopant loss

The nuclear excitation of Thorium-229 in the CaF2 environment : Development of a crystalline nuclear clock Anregung des Thorium-229 Kerns in einer Kalziumfluorid-Matrix · DSpace-CRIS at TU Wien

Excessive dopant concentrations exceed solubility limits and induce phase segregation

6 theses · 4 institutions

Introducing dopants beyond their thermodynamic solubility limits causes phase separation and the formation of secondary resistive impurities. Overdoping disrupts the parent crystal lattice and lamellar structures, leading to severe capacity loss and degraded performance.

Tried and failed

high-concentration substitutional cation doping applied to perovskite metal oxide nanoparticles. Reason: Dopant concentration exceeded solubility limits, forming secondary impurity phases rather than single-phase perovskite.

Study of the effect of d-block and p-block dopants on material and photocatalytic properties of srtio3 · Imperial

Tried and failed

doping oxide and phosphate impurity phases applied to catalytic nitrate reduction. Outcome: worse than baseline. Reason: impurity phases decreased hydrogenation activity instead of acting as cocatalysts

Removal of nitrate with nanoscale nickel phosphides · Iowa State

Tried and failed

high-concentration isovalent cation co-doping applied to oxide proton conductors. Outcome: worse than baseline. Reason: exceeded solubility limit causing segregation of a resistive secondary phase

Investigation of structure and conductivity of LaNb0.9Mo0.1O4.05 based materials · Imperial

Considered and rejected

Considered and rejected: Single-element Mn doping for ultrahigh-Ni (>90% Ni) stabilization when operated under energy-density control, because it induces premature H2–H3 phase transition and severe interphasial degradation.

High-voltage oxide cathodes for high-energy-density lithium-ion batteries · UT Austin

Tried and failed

high-concentration chemical doping applied to conjugated polymer thermoelectric materials. Outcome: worse than baseline. Reason: severe structural disruption of lamellae caused over-doping, decreasing Seebeck coefficient without increasing electrical conductivity

Examining thermal and charge transport in organic materials with pi-electron interactions · Georgia Tech

Tried and failed

increasing precursor molar ratio in alloy synthesis applied to bimetallic nanoparticle preparation. Reason: excess iron precursor caused phase separation into biphasic core-shell nanoparticles with surface iron oxide

Responsive dual nanoparticle ¹⁹F magnetic resonance molecular imaging probes · UT Austin

Tried and failed

high-concentration multi-element substitutional doping applied to high-nickel oxide cathode materials. Outcome: worse than baseline. Reason: excess dopants cause severe capacity loss and synthesis phase inhomogeneity

High-voltage oxide cathodes for high-energy-density lithium-ion batteries · UT Austin

Nanoparticle incorporation into polymers causes optical scattering, curing inhibition, and processing defects

6 theses · 6 institutions

Blending nanoparticles into liquid monomers or polymer resins induces optical scattering, high viscosity, and incomplete matrix incorporation. These additives also inhibit standard curing reactions, leach out in reactive media, or obstruct the porosity of host frameworks.

Tried and failed

nanoparticle loading on porous polymer frameworks applied to conjugated microporous polymers for photocatalysis. Outcome: worse than baseline. Reason: nanoparticles obstructed the framework pores, significantly reducing the specific surface area

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

Considered and rejected

Considered and rejected: Rejected direct incorporation of conductive nanoparticles into photopolymer resin due to laser scattering, unwanted polymerization, poor mechanical properties, and low conductivity.

Development of 3D printed enzymatic biofuel cells for powering implantable biomedical devices · University of Nottingham Repository

Considered and rejected

Considered and rejected: Rejected UV photopolymerization for hybrid inorganic-organic ionogels due to nanoparticle light-scattering and photon shielding, adopting thermal polymerization instead.

Hybrid Ionogels and Self-Healing Electrolytes: Innovative Solutions for Safer Lithium Metal Batteries · IRIS - POLITO - prod

Considered and rejected

Considered and rejected: Rejected Ecoflex doped with 150 nm nanoparticles because smaller particle size inhibited curing of the polymer.

Improving Respiratory Sound Monitoring and Analysis through Noise Control, Sensor Design, and Real-World Considerations · JScholarship

Considered and rejected

Considered and rejected: Rejected silver and gold nanoparticle-loaded conductive hydrogels due to particle oxidation/cytotoxicity (Ag) and precursor viscosity/lack of percolation conductivity (Au).

Development of an injectable hydrogel electrode for the treatment of ventricular arrhythmias · UT Austin

Tried and failed

high-volume-fraction nanoparticle loading in liquid monomer applied to particle-reinforced elastomer synthesis. Reason: nanoparticles fail to incorporate completely into the liquid monomer above a critical volume fraction

Fracture of Heterogeneous Soft Materials · Harvard

Tried and failed

noble metal nanoparticle incorporation for electrical conductivity applied to injectable hydrogels. Outcome: unstable. Reason: Nanoparticles oxidized, leached in aqueous persulfate systems, failed below percolation threshold, and increased precursor viscosity excessively

Development of an injectable hydrogel electrode for the treatment of ventricular arrhythmias · UT Austin

Inappropriate reaction conditions prevent homogeneous doping and complete precursor conversion

7 theses · 6 institutions

Syntheses performed below required melt temperatures or without appropriate swelling solvents fail to facilitate homogeneous dopant infiltration into host structures. Sub-optimal precursor concentrations and lack of templating environments also lead to low product yields and unreacted starting phases.

Tried and failed

melt synthesis doping below liquidus temperature applied to solid-state electrolyte halide mixtures. Reason: reactants failed to form a molten homogeneous solution at target temperature, leading to incomplete doping

Borohydride-based solid electrolytes and polymer composite separators for lithium-ion batteries · Georgia Tech

Tried and failed

solution-based electrical doping without swelling solvent applied to conjugated polymer solar cell films. Outcome: worse than baseline. Reason: lack of swelling solvent prevented effective dopant penetration into the conjugated polymer layer

Application of solution-based electrical doping to non-fullerene organic solar cells · Georgia Tech

Tried and failed

low-temperature solid-state metathesis synthesis applied to chromium nitride nanoparticle synthesis. Reason: incomplete reaction yielding mixed nitride phases, unreacted oxide precursor, or reduced elemental metal

SYNTHESIS, CHARACTERIZATION, AND PHOTOTHERMAL PROPERTIES OF PLASMONIC METAL NITRIDE NANOPARTICLES · DalSpace

Tried and failed

sacrificial metal template pyrolysis with low dilution applied to single-atom catalyst synthesis. Reason: insufficient spatial isolation by the sacrificial metal allowed target metal atoms to aggregate into nanoparticles

MOF-Derived Electrocatalysts for Sustainable Energy Conversion/Storage Systems · Cornell

Considered and rejected

Considered and rejected: Rejected low reagent concentrations for hydrothermal SrF2 synthesis because they resulted in insufficient product yields despite yielding smaller nanoparticles

Synteza i zbadanie zjawiska up-konwersji nanocząstek sensybilizowanych jonami Er3+ i Ho3+ Synthesis and investigation of the up-conversion phenomenon in nanoparticles sensitized by Er3+ and Ho3+ ions · AMUR - Repozytorium Uniwersytetu im. Adama Mickiewicza w Poz

Considered and rejected

Considered and rejected: Rejected heating low-melting solids/high-boiling liquids for vapor doping due to condensing/overdoping and atmospheric reactions.

INELASTIC ELECTRON TUNNELLING SPECTROSCOPY (lETS) OF SILANE COUPLING AGENTS · De Montfort Open Research Archive (DORA)

Considered and rejected

Considered and rejected: Rejected solution polymerisation in homogeneous organic solvents (DMF, DMSO, MeCN) due to lack of templating conditions required for nanoparticle formation

Design, synthesis, and analysis of crosslinked polymeric nanoparticles for drug delivery applications · Imperial

Core-shell synthesis methods suffer from separate nucleation and non-conformal island deposition

4 theses · 2 institutions

Shell growth on nanoparticle seeds often fails when secondary homogeneous nucleation creates isolated particle populations instead of coated architectures. Poor seed adhesion and island growth on irregular geometries yield uneven coatings and aggregates rather than uniform core-shell morphologies.

Tried and failed

carbide nanoparticle core-shell deposition applied to noble metal electrocatalyst synthesis. Reason: Inconsistent core particle size distributions caused incomplete shell coverage and unattached metal nanoparticle precipitation.

Transition Metal Heterogeneous Catalysis Towards Applications in Sustainable Energy: Leveraging Rational Design Principles for Activity, Stability, and Stereoselectivity · MIT

Tried and failed

silica shell encapsulation applied to branched anisotropic nanoparticles. Outcome: unstable. Reason: produced irregular aggregates rather than forming a uniform conformal coating

All that glitters is gold: gold nanostars for enhanced fluroescence in the near infra-red window · Imperial

Tried and failed

heterogeneous core-shell nanoparticle growth applied to magnetic-upconversion nanocomposite synthesis. Reason: nucleation yielded separate homogeneous particle populations instead of heterogeneous core-shell coating

Phosphonate-anchored ligands for upconversion imaging nanoprobes · Imperial

Tried and failed

direct seed-mediated metal shell overgrowth applied to bimetallic core-shell nanoparticle synthesis. Outcome: unstable. Reason: uncontrolled island-like deposition caused poor colloidal stability and nanoparticle aggregation

Peroxidase-mimicking nanomaterials for amplified lateral flow immunoassays · Imperial

Tried and failed

nanoparticle seed grafting on unfunctionalized surfaces applied to silica core-shell nanoparticle synthesis. Reason: poor seed adhesion caused formation of unwanted nanowire networks instead of uniform shells

All that glitters is gold: gold nanostars for enhanced fluroescence in the near infra-red window · Imperial

Left open by the authors

Problems the authors named and did not get to.

Left open

Synthesize ternary nanocomposites by crosslinking nanoparticles or using core/shell architectures to improve upconversion nanoparticle emission utilization efficiency. Blocker: Requires a wet chemistry and nanomaterials laboratory to synthesize polymer-ligated nanocrystals and characterize optical properties.

Polymer-Ligated Nanocrystals with Tunable Dimensions, Compositions, and Architectures · Georgia Tech

Left open

Resolve phase separation and purification issues encountered during grafting-to phosphonate coupling onto silica nanoparticles. Blocker: Requires a wet-lab chemistry setup for nanoparticle synthesis, chemical coupling, and purification

Mechanical reinforcement and property tuning of adhesive elastomers with polymer-grafted inorganic nanoparticles · MIT

Left open

Dope conjugated microporous polymers with heteroatoms and functionalize their surfaces with functional groups or metal nanoparticle cocatalysts for photocatalysis. Blocker: Requires a wet chemistry synthesis lab, specialized precursors, and physical characterization equipment.

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

Left open

Isolate and clarify the individual photocatalytic roles of nitrogen/ammonium precursors versus nickel doping in sol-gel synthesized TiO2 for hydrogen production. Blocker: Requires a wet chemistry laboratory, sol-gel synthesis equipment, and photoreaction apparatus.

Producción de hidrógeno mediante fotocatálisis heterogénea · accedaCRIS

Left open

Investigate co-doping strategies in spray-pyrolysis-deposited iron oxide thin films to enhance photocatalytic activity. Blocker: Requires a wet chemistry and material synthesis lab with spray pyrolysis apparatus to synthesize and test thin films.

Elaboration and optimization of Iron Oxide thin films deposited via spray pyrolysis. Applications in water treatment · DSpace at University of El Oued

Left open

Test alternative stabilizing agents or dopants during silver nanoparticle synthesis to evaluate changes in porosity, biocompatibility, and catalytic selectivity. Blocker: Requires a wet chemistry lab and materials characterization equipment to synthesize and test nanoparticles.

Exploring the Mechanisms of the Early Stages of the Formation of Silver Nanoparticles and the Role of Organic Additives · Leibniz Universität Hannover Repository

Left open

Control the graded refractive index profile shapes (linear, sub-linear, super-linear) via nanoparticle synthesis and deposition to improve anti-reflective performance. Blocker: Requires chemical synthesis (mesoporous silica nanoparticles) and wet-lab fabrication/deposition equipment.

Design And Fabrication Of Passive Cooling Materials For Sustainable Solar Energy And Building Applications · Penn

Left open

Map the 3D arrangement of sintered nanoparticles using tomographic reconstruction and evaluate catalytic performance across particle size ratios. Blocker: Requires synthesized nanoparticle samples and physical experimental apparatus (electron tomography, catalytic testing)

Kinetic Manipulation of Self-Assembling Systems for Scalable Nanomaterials Synthesis · MIT

Left open

Investigate thermal shielding methods to prevent CdTe nanoparticle agglomeration and luminescence loss under high-temperature conditions in photovoltaic applications. Blocker: Requires a wet-chemistry synthesis and materials characterization lab to prepare, shield, and test CdTe nanoparticle coatings.

The influences of post-preparative treatments on luminescence from CdTe nanoparticles · Cranfield

Left open

Synthesize and measure low-doping R1-xR'xNiO3 series to determine the critical tolerance factor tc for metal-insulator transitions. Blocker: Requires chemical synthesis (sol-gel) and high-pressure oxygen annealing laboratory equipment

Metal-insulator transition in yttrium- and neodymium-doped lanthanum nickelates · UT Austin

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