2025 · paper
Evidence of High Fluorine Ion Conductivity in SrF2-Rich SrF2-TiO2-Based Compounds
The paper separates ionic and electronic transport in SrF2-TiO2-based compounds and reports mixed conduction near room temperature.[32]
functional ceramics and energy materials
יתיר סעדיה
Identity: verifiedThe Bar-Ilan CRIS profile identifies Yatir Sadia and links him to the Faculty of Engineering and the inspected heteroanionic-materials work. [31]
Documented foundation
Bar-Ilan materials researcher studying functional ceramics, heteroanionic compounds, ionic transport and thermoelectric or electrochemical energy conversion.[31]
heteroanionic materialsionic-conductivity measurementthermoelectric materialssolid-state synthesis
The institutional profile and research feature were inspected; no current CV file was verified.[31]
Representative records, not a complete publication list. Metadata confirms attribution; it does not independently replicate a result.
2025 · paper
The paper separates ionic and electronic transport in SrF2-TiO2-based compounds and reports mixed conduction near room temperature.[32]
0 catalogued patent records
Coverage: No attributable record found in this search
Bounded Yatir Sadia/Sadia Yatir inventor searches plus official materials/thermoelectrics profile produced no inspected attributable patent record. Publication coauthorship with Gelbstein/Skinner and papers cited by patents do not establish inventor status. No absence inference; BGU/Imperial and current name variants were not exhaustively searched in national databases.
No publication records verified in this search; this does not establish absence of patents.
Original evidence: not verified
No attributable patent record was verified in the bounded search; citation by a patent was not treated as inventorship.
Records are counted separately from identified families. Author-reported entries are labelled and may still need publication verification. Inventorship, publication-time applicant and current ownership are different facts. No legal-status, patentability or freedom-to-operate conclusion is made.
Scores prioritize research fit from 1–10; they are not probabilities.
Review: Reviewed with limitations
Proposed capability matches, not confirmed relationships. Scores are analyst judgments with low forecast confidence; researcher interests, capacity and feasibility need confirmation.
10 candidates
Connection 1
Proposal hypothesis: Sadia's functional ceramics and conductivity measurements provide material targets for Goldzak Mizrahi's electronic-structure calculations.[31][32][132][133]
Proposed first test: Compare two documented compositions using calculated transport-relevant descriptors and published conductivity trends.
Rank 1/10; fit 9/10 (4 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. A descriptor correlation cannot substitute for ionic-transport or finite-temperature validation. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 2
Original proposal
Proposal hypothesis: Tesler can characterize fouling-resistant coatings while Sadia assesses ionic transport through a functional ceramic sensing interface.[12][13][31][32]
Proposed first test: Compare coated and uncoated ceramic coupons in a defined salt solution; measure conductivity drift, deposit coverage and coating stability.
Rank 2/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). Preserved original co-membership proposal in o07. An added candidate, Tamar Goldzak Mizrahi (9/10), ranks above this original because its stated pair-specific roles and first test score higher; this original is limited as follows: An antifouling layer can block the very ionic transport needed for sensing; chemistry and readout must be selected first. No automatic score boost for original membership. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 3
Original proposal
Proposal hypothesis: Sadia's ionic-conductivity measurements can define material drift that Amir Weiss treats as an estimation problem with nuisance temperature and chemistry variables.[31][32][108][109]
Proposed first test: Fit a conductivity calibration on one bounded condition and hold out another; compare bias and interval coverage against a constant calibration.
Rank 3/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). Preserved original co-membership proposal in o07. An added candidate, Tamar Goldzak Mizrahi (9/10), ranks above this original because its stated pair-specific roles and first test score higher; this original is limited as follows: A useful sensing observable is unverified, so model results cannot imply a deployable environmental sensor. No automatic score boost for original membership. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 4
Proposal hypothesis: Sadia can define a plausible thermoelectric power envelope while Teman models digital memory behaviour under that intermittent supply.[1][31][32]
Proposed first test: Replay synthetic power traces based on bounded thermoelectric assumptions through a memory/checkpoint model; measure lost work and energy overhead.
Rank 4/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. A complete energy harvester and realistic available power are not verified. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 5
Proposal hypothesis: Panfil's colloidal-defect spectroscopy and Sadia's functional-material synthesis could compare how composition and defects affect optical versus transport responses.[25][26][31][32]
Proposed first test: Select a literature-supported material family and test whether a small defect/composition model predicts jointly measurable spectral and conductivity changes.
Rank 5/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. A common material system is not established; stop if no chemically compatible family is found. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 6
Proposal hypothesis: Sadia's thermoelectric and ceramic materials could supply a temperature-dependent response for Lewi's light-matter design.[31][32][67][68]
Proposed first test: Model a measured candidate material response in a passive optical element and compare temperature sensitivity with a conventional dielectric.
Rank 6/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. The material must have suitable optical loss and processing compatibility. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 7
Proposal hypothesis: Sadia's costly composition/conductivity experiments could be scheduled using Singer's stochastic control and cost-sensitive decisions.[31][32][79][80]
Proposed first test: Simulate a small candidate-composition queue and compare adaptive measurement allocation with equal replication on error and experiment count.
Rank 7/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. A meaningful materials objective and measurement-noise model must be supplied by Sadia. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 8
Proposal hypothesis: Sadia's thermoelectric conversion and Fish's biomedical low-power circuits could test whether a sensor duty cycle fits a constrained thermal energy budget.[31][32][89][90]
Proposed first test: Compare two sensor duty cycles against a bounded thermal-power model on uptime, readout error and stored-energy requirements.
Rank 8/10; fit 7/10 (2 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. Wearable suitability, materials safety and a fabricated harvester are unestablished. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 9
Proposal hypothesis: Sadia can characterize thermal material constraints and Yavits can expose memory-centric workload heat and power profiles.[31][32][104][105]
Proposed first test: Compare two compute duty cycles using a simple thermal model; report peak temperature and lost throughput for an explicitly assumed material stack.
Rank 9/10; fit 6/10 (1 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. This is a thermal-computing feasibility question, not documented chip-cooling expertise for Sadia. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
Connection 10
Proposal hypothesis: Sadia's thermoelectric materials offer a possible thermal-control element for Desiatov's temperature-sensitive nonlinear devices.[31][32][135][136]
Proposed first test: Model a bounded thermal gradient and compare converter drift with passive stabilization; include thermal resistance and electrical power.
Rank 10/10; fit 6/10 (1 topic overlap + 3 complementarity + 2 feasible first test). New pairing outside the frozen portfolio co-member graph. Thermoelectric expertise does not establish photonic packaging capability, so this is a low-overlap bridge. Equal scores use existing-first, then stable researcher ID.
Analyst proposal hypothesis, not an established collaboration, commitment, evidence-confidence rating or assessment of researcher quality; confirm participation and access before work.
10 candidates
Connection 1
Technical University of Munich
Original proposal
The current TUM profile describes solid-state electrolyte chemistry, ceramic processing and energy-device prototypes, complementing Sadia's bulk heteroanionic transport work; this is a proposed match only.[31][33][491]
Fabricate a small composition-gradient coupon and measure conductivity, selectivity and stability under one bounded device-relevant condition.
Rank 1/10 after semantic revision; analyst score 9 = max(1, 4+3+2): topic overlap 4/4, complementarity 3/3, feasible first test 2/3. The experiment, numerical inputs or identity/scope needs confirmation before execution. Original remains first under these components; original status breaks equal-score ties only, without a prestige bonus.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 2
University of California, Berkeley
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Gerbrand Ceder's documented computational materials design, thermodynamics and diffusion for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is thermodynamics and computational materials screening; this transfer is an analyst hypothesis.[31][446]
Rank a small composition set by stability and a predeclared functional descriptor, then hold out one known composition using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare rank stability, prediction error and sensitivity to competing phases with a reference composition processed under the same conditions.
Rank 2/10 after semantic revision; analyst score 9 = max(1, 3+3+3): topic overlap 3/4, complementarity 3/3, feasible first test 3/3. A bounded offline comparison is specified; required datasets and domain assumptions must still be checked.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 3
The University of Chicago and Argonne National Laboratory
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Giulia Galli's documented first-principles materials simulation, electronic structure for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is first-principles electronic structure and material properties; this transfer is an analyst hypothesis.[31][453]
Compare two converged first-principles approximations on one small material model using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare property disagreement, finite-size effects and computational cost with a reference composition processed under the same conditions.
Rank 3/10 after semantic revision; analyst score 9 = max(1, 3+3+3): topic overlap 3/4, complementarity 3/3, feasible first test 3/3. A bounded offline comparison is specified; required datasets and domain assumptions must still be checked.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 4
University of Cambridge
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Clare Grey's documented solid-state NMR, ionic conduction for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is local structure and ion-transport characterization; this transfer is an analyst hypothesis.[31][458]
Design an NMR/impedance cross-check on two states of the same solid-state composition using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare agreement between inferred ion motion and bulk conductivity with a reference composition processed under the same conditions.
Rank 4/10 after semantic revision; analyst score 9 = max(1, 4+3+2): topic overlap 4/4, complementarity 3/3, feasible first test 2/3. The experiment, numerical inputs or identity/scope needs confirmation before execution.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 5
Lawrence Berkeley National Laboratory
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Kristin Persson's documented atomistic materials modelling, electrolyte discovery for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is atomistic screening and uncertainty of materials descriptors; this transfer is an analyst hypothesis.[31][484]
Compare two atomistic descriptor sets on an explicitly bounded composition library using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare held-out descriptor error and ranking sensitivity to computational settings with a reference composition processed under the same conditions.
Rank 5/10 after semantic revision; analyst score 9 = max(1, 3+3+3): topic overlap 3/4, complementarity 3/3, feasible first test 3/3. A bounded offline comparison is specified; required datasets and domain assumptions must still be checked.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 6
Massachusetts Institute of Technology
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Yang Shao-Horn's documented electrochemical interfaces, reaction kinetics for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is interface kinetics in electrochemical materials; this transfer is an analyst hypothesis.[31][494]
Fit competing interface-reaction models to the same synthetic or measured kinetic/impedance traces using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare parameter identifiability and sensitivity to surface-state assumptions with a reference composition processed under the same conditions.
Rank 6/10 after semantic revision; analyst score 9 = max(1, 4+3+2): topic overlap 4/4, complementarity 3/3, feasible first test 2/3. The experiment, numerical inputs or identity/scope needs confirmation before execution.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified. The inspected profile says no graduate-student intake for 2026-2027; that does not establish willingness or unwillingness to collaborate.
Connection 7
The University of Texas at Austin
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Feliciano Giustino's documented electronic structure, electron-phonon interactions for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is finite-temperature electronic and phonon effects; this transfer is an analyst hypothesis.[31][134][454]
Compare a frozen-structure calculation with a temperature-perturbed model of the chosen material using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare predicted spectral or transport shifts and convergence sensitivity with a reference composition processed under the same conditions.
Rank 7/10 after semantic revision; analyst score 8 = max(1, 2+3+3): topic overlap 2/4, complementarity 3/3, feasible first test 3/3. A bounded offline comparison is specified; required datasets and domain assumptions must still be checked.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 8
EPFL
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Nicola Marzari's documented materials theory, materials simulation for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is materials simulation methods; this transfer is an analyst hypothesis.[31][473]
Benchmark a small material model with two numerical settings before scaling a screening campaign using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare convergence, reproducibility and cost per material with a reference composition processed under the same conditions.
Rank 8/10 after semantic revision; analyst score 8 = max(1, 2+3+3): topic overlap 2/4, complementarity 3/3, feasible first test 3/3. A bounded offline comparison is specified; required datasets and domain assumptions must still be checked.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified. The inspected directory establishes broad materials theory/simulation; a specific defect or ion-transport method still needs confirmation.
Connection 9
California Institute of Technology
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Harry Atwater's documented metasurfaces, two-dimensional materials for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is light-matter response of patterned materials; this transfer is an analyst hypothesis.[31][69][434]
Simulate two patterned-material optical responses and explicitly test whether the optical observable tracks the intended physical state using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare spectral selectivity, loss and correlation with the predeclared state; reject an unsupported optical proxy with a reference composition processed under the same conditions.
Rank 9/10 after semantic revision; analyst score 6 = max(1, 2+2+2): topic overlap 2/4, complementarity 2/3, feasible first test 2/3. The experiment, numerical inputs or identity/scope needs confirmation before execution.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified.
Connection 10
Harvard University
Proposed capability match: Yatir Sadia's heteroanionic materials, ionic-conductivity measurement can be paired with Jennifer A. Lewis's documented functional inks, multi-material three-dimensional printing for heteroanionic ceramics for solid-state electrochemical devices. The specific contribution is fabrication geometry, conditional on a compatible conducting formulation; this transfer is an analyst hypothesis.[31][468]
Screen printable inert-surrogate geometries before selecting an ion-conducting chemistry using a bounded functional-ceramic composition and processing study with ionic/electronic transport separated. Compare pore connectivity, print variability and predicted resistance with a reference composition processed under the same conditions.
Rank 10/10 after semantic revision; analyst score 6 = max(1, 2+2+2): topic overlap 2/4, complementarity 2/3, feasible first test 2/3. The experiment, numerical inputs or identity/scope needs confirmation before execution.
Proposed fit, not an assertion of a new or active relationship. Independent review pending; forecast confidence low. Partner interest, capacity, data access and any required experimental approvals/resources are unverified. Contribution is restricted to the scope stated in the first test.
Yatir Sadia's documented expertise includes heteroanionic functional ceramics, ionic transport and thermoelectric materials. [31][32]
Moderate confidenceReview: reviewedNo current CV was verified.
Hypothesis: Sadia could screen heteroanionic ceramics as membranes or interlayers for compact solid-state electrochemical devices. [32][33]
Low confidenceReview: reviewedIon identity, device chemistry, compatibility and efficiency require verification.