Tricia Carmichael
#33,620
Most Influential Person Now
Materials scientist and engineer
Tricia Carmichael's AcademicInfluence.com Rankings
Tricia Carmichaelengineering Degrees
Engineering
#3294
World Rank
#4347
Historical Rank
Metallurgy
#67
World Rank
#95
Historical Rank
Materials Science
#564
World Rank
#573
Historical Rank
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Engineering Mathematics
Tricia Carmichael's Degrees
- Masters Materials Science and Engineering Stanford University
- PhD Materials Science and Engineering California Institute of Technology
Why Is Tricia Carmichael Influential?
(Suggest an Edit or Addition)According to Wikipedia, Tricia L. Carmichael is a Professor in the Department of Chemistry and Biochemistry at the University of Windsor. She develops new materials for stretchable electronics with a current focus on wearable electronic devices.
Tricia Carmichael's Published Works
Published Works
- High-performance, solution-processed organic thin film transistors from a novel pentacene precursor. (2002) (369)
- Silver nanowire/optical adhesive coatings as transparent electrodes for flexible electronics. (2013) (140)
- Stretchable Light‐Emitting Electrochemical Cells Using an Elastomeric Emissive Material (2012) (119)
- Formation and reactivity of the early metal phosphides and phosphinidenes Cp*2Zr=PR, Cp*2Zr(PR)2, and Cp*2Zr(PR)3 (1993) (116)
- PHOSPHINIDENE TRANSFER REACTIONS OF THE TERMINAL PHOSPHINIDENE COMPLEX CP2ZR(PC6H2-2,4,6-T-BU3)(PME3) (1995) (103)
- Odd-even effects in charge transport across n-alkanethiolate-based SAMs. (2014) (92)
- Patterning indium tin oxide and indium zinc oxide using microcontact printing and wet etching (2002) (81)
- Patterning organic–inorganic thin-film transistors using microcontact printed templates (2001) (71)
- Crystallization of Millimeter-Scale Objects with Use of Capillary Forces (1998) (66)
- Patterned, Flexible, and Stretchable Silver Nanowire/Polymer Composite Films as Transparent Conductive Electrodes. (2019) (62)
- MASKLESS PHOTOLITHOGRAPHY : EMBOSSED PHOTORESIST AS ITS OWN OPTICAL ELEMENT (1998) (51)
- The 2021 flexible and printed electronics roadmap (2021) (49)
- A comparative analysis of capacitive-based flexible PDMS pressure sensors (2019) (46)
- Stretchable Ultrasheer Fabrics as Semitransparent Electrodes for Wearable Light-Emitting e-Textiles with Changeable Display Patterns (2020) (41)
- A Self-Assembled, Low-Cost, Microstructured Layer for Extremely Stretchable Gold Films. (2015) (39)
- Solution Deposition of Conformal Gold Coatings on Knitted Fabric for E‐Textiles and Electroluminescent Clothing (2018) (38)
- An efficient synthesis of symmetrical oligothiophenes: Synthesis and transport properties of a soluble sexithiophene derivative (2002) (38)
- METALLACYCLE TRANSFER ROUTES TO MAIN-GROUP PHOSPHACYCLES (1997) (34)
- Fabrication of Elastomeric Wires by Selective Electroless Metallization of Poly(dimethylsiloxane) (2008) (33)
- Substitution or nucleophilic attack by phosphines on tetrachlorobis(tetrahydrofuran)zirconium (1992) (33)
- Selective electroless metal deposition using microcontact printing of phosphine-phosphonic acid inks. (2004) (28)
- Selectively metallized polymeric substrates by microcontact printing an aluminum(III) porphyrin complex. (2010) (27)
- Early Metal Mediated P-P Bond Formation in Cp2M((PR)2) and Cp2M((PR)3) Complexes (1994) (25)
- Reinventing Butyl Rubber for Stretchable Electronics (2016) (25)
- 25 Years of Light‐Emitting Electrochemical Cells: A Flexible and Stretchable Perspective (2021) (25)
- SYNTHESIS AND REACTIVITY OF PHOSPHAMETALLACYCLOBUTENES : STERICALLY INDUCED 4 + 2 RETROCYCLOADDITIONS (1996) (23)
- Propargyl Chlorides as Sources for Cobalt Stabilized .gamma.-Carbonyl Cations (1995) (21)
- Ultrasmooth gold surfaces prepared by chemical mechanical polishing for applications in nanoscience. (2014) (21)
- REACTIVITY STUDIES OF METHYLZIRCONOCENE PHOSPHIDE COMPLEXES (1996) (19)
- Wearable E-Textiles Using a Textile-Centric Design Approach. (2021) (19)
- Synthesis and Reactivity of Phosphametallacycles: Sterically Induced Epimerizations and Retrocycloadditions (1996) (18)
- New dialkyldithiophosphinic acid self-assembled monolayers (SAMs): influence of gold substrate morphology on adsorbate binding and SAM structure. (2011) (18)
- Heterogeneous Surface Orientation of Solution-Deposited Gold Films Enables Retention of Conductivity with High Strain—A New Strategy for Stretchable Electronics (2019) (15)
- Stretchable metal films (2018) (15)
- A summary of applications of uncooled microbolometer sensors (1999) (14)
- Membrane-Interface-Elastomer Structures for Stretchable Electronics (2018) (14)
- Conducting materials as building blocks for electronic textiles (2021) (13)
- Developing the Surface Chemistry of Transparent Butyl Rubber for Impermeable Stretchable Electronics. (2016) (12)
- Transparent, stretchable, and conductive SWNT films using supramolecular functionalization and layer-by-layer self-assembly (2016) (12)
- Templated self-assembly of glass microspheres into ordered two-dimensional arrays under dry conditions. (2010) (12)
- Zr−E π-Bonding in Complexes Derived from E−H Additions to Cp2Zr(P(C6H2-2,4,6-t-Bu3))(PMe3) (1996) (12)
- Influence of alkyl chain length on the structure of dialkyldithiophosphinic acid self-assembled monolayers on gold. (2012) (10)
- Velour Fabric as an Island-Bridge Architectural Design for Stretchable Textile-Based Lithium-ion Battery Electrodes. (2020) (10)
- Formation of self-assembled monolayers with homogeneously mixed, loosely packed alkyl groups using unsymmetrical dialkyldithiophosphinic acids. (2012) (8)
- Imaging patterns of intensity in topographically directed photolithography (2005) (7)
- The unusual self-organization of dialkyldithiophosphinic acid self-assembled monolayers on ultrasmooth gold. (2014) (7)
- Ready-to-wear strain sensing gloves for human motion sensing (2021) (5)
- New dihexadecyldithiophosphate SAMs on gold provide insight into the unusual dependence of adsorbate chelation on substrate morphology in SAMs of dialkyldithiophosphinic acids. (2013) (5)
- Propargyl Chlorides as Sources for Cobalt‐Stabilized γ‐Carbonyl Cations. (1996) (4)
- Elastomeric Emissive Materials: Stretchable Light‐Emitting Electrochemical Cells Using an Elastomeric Emissive Material (Adv. Mater. 20/2012) (2012) (3)
- Early Metal Mediated P-P Bond Formation in Cp2M((PR)2) and Cp2M((PR)3) Complexes. [Erratum to document cited in CA120:245375] (1995) (3)
- Intrinsically Conductive Liquid Metal‐Elastomer Composites for Stretchable and Flexible Electronics (2022) (1)
- Protocol for fabricating electroless nickel immersion gold strain sensors on nitrile butadiene rubber gloves for wearable electronics (2021) (1)
- From Chlorinated Solvents to Branched Polyethylene: Solvent‐Induced Phase Separation for the Greener Processing of Semiconducting Polymers (2021) (1)
- Studies of terminal phosphinidene complexes of zirconium. (1996) (1)
- Engineering the Cracking Patterns in Stretchable Copper Films Using Acid-Oxidized Poly(dimethylsiloxane) Substrates (2022) (0)
- Flexible and printed electronics: a transition in leadership—reflecting on our successes and looking forward to the future (2022) (0)
- Elastomers: Reinventing Butyl Rubber for Stretchable Electronics (Adv. Funct. Mater. 29/2016) (2016) (0)
- A Wearable Multisensor Patch for Breathing Pattern Recognition (2023) (0)
- Metal-Interface-Elastomer (MINE) Structures for Stretchable Electronics (2018) (0)
- The synergistic effect of topography and stiffness as a crack engineering strategy for stretchable electronics (2022) (0)
- Cover Picture: Fabrication of Elastomeric Wires by Selective Electroless Metallization of Poly(dimethylsiloxane) (Adv. Mater. 1/2008) (2008) (0)
- Creating Stretchable, Flexible Electronics With MINE Structures (2018) (0)
- Shellac-paper composite as a green substrate for printed electronics (2022) (0)
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What Schools Are Affiliated With Tricia Carmichael?
Tricia Carmichael is affiliated with the following schools: