C Daniel Frisbie
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Explore the profile of C Daniel Frisbie including associated specialties, affiliations and a list of published articles.
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Articles
126
Citations
1575
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Recent Articles
11.
Wang Y, Wang Y, Frisbie C
ACS Appl Mater Interfaces
. 2023 Feb;
PMID: 36780640
We report steady-state voltammetry of outer-sphere redox species at back-gated ultrathin ZnO working electrodes in order to determine electron transfer rate constants as a function of independently controlled gate bias,...
12.
Onn T, Gathmann S, Guo S, Solanki S, Walton A, Page B, et al.
J Am Chem Soc
. 2022 Nov;
144(48):22113-22127.
PMID: 36383403
Accelerating catalytic chemistry and tuning surface reactions require precise control of the electron density of metal atoms. In this work, nanoclusters of platinum were supported on a graphene sheet within...
13.
Tang B, Schneiderman D, Zare Bidoky F, Frisbie C, Lodge T
ACS Macro Lett
. 2022 Jun;
6(10):1083-1088.
PMID: 35650946
We have designed printable, biocompatible, and degradable ion gels by combining a novel ABA triblock aliphatic polyester, poly(ε-decalactone)--poly(dl-lactide)--poly(ε-decalactone), and a low toxicity ionic liquid, 1-butyl-1-methylpyrrolidinium bistrifluoromethanesulfonylimide ([P][TFSI]). Due to the...
14.
Onn T, Gathmann S, Wang Y, Patel R, Guo S, Chen H, et al.
JACS Au
. 2022 Jun;
2(5):1123-1133.
PMID: 35647588
Precise control of electron density at catalyst active sites enables regulation of surface chemistry for the optimal rate and selectivity to products. Here, an ultrathin catalytic film of amorphous alumina...
15.
Speros J, Paulsen B, Slowinski B, Frisbie C, Hillmyer M
ACS Macro Lett
. 2022 May;
1(8):986-990.
PMID: 35607022
Three dipropenyl monomers were prepared for ruthenium-catalyzed acyclic diene metathesis (ADMET) polymerization. Homopolymerization afforded three poly(thienylene vinylene)s (PTVs) with distinct optoelectronic properties. Binary combinations of the monomers over a range...
16.
Zare Bidoky F, Frisbie C
ACS Appl Mater Interfaces
. 2022 Apr;
14(18):21295-21300.
PMID: 35476913
Electrolyte-gated transistors (EGTs) have emerging applications in physiological recording, neuromorphic computing, sensing, and flexible printed electronics. A challenge for these devices is their slow switching speed, which has several causes....
17.
Torricelli F, Adrahtas D, Bao Z, Berggren M, Biscarini F, Bonfiglio A, et al.
Nat Rev Methods Primers
. 2022 Apr;
1.
PMID: 35475166
Electrolyte-gated transistors (EGTs), capable of transducing biological and biochemical inputs into amplified electronic signals and stably operating in aqueous environments, have emerged as fundamental building blocks in bioelectronics. In this...
18.
He T, Frisbie C
ACS Nano
. 2022 Mar;
16(3):4823-4830.
PMID: 35243860
Electric double layer transistors (EDLTs) based on C single crystals and ionic liquid gates display pronounced peaks in sheet conductance versus gate-induced charge. Sheet conductance is maximized at electron densities...
19.
Xie Z, Cabanes V, Nguyen Q, Rodriguez-Gonzalez S, Norel L, Galangau O, et al.
ACS Appl Mater Interfaces
. 2021 Nov;
13(47):56404-56412.
PMID: 34783518
A number of factors contribute to orbital energy alignment with respect to the Fermi level in molecular tunnel junctions. Here, we report a combined experimental and theoretical effort to quantify...
20.
Xie Z, Baldea I, Nguyen Q, Frisbie C
Nanoscale
. 2021 Oct;
13(39):16755-16768.
PMID: 34604892
Metal-molecule-metal junctions based on alkane thiol (CT) and oligophenylene thiol (OPT) self-assembled monolayers (SAMs) and Au electrodes are expected to exhibit similar electrical asymmetry, as both junctions have one chemisorbed...