Christopher L Soles
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Explore the profile of Christopher L Soles including associated specialties, affiliations and a list of published articles.
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34
Citations
195
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Recent Articles
11.
Takeuchi S, McGehee W, Schaefer J, Wilson T, Twedt K, Chang E, et al.
J Electrochem Soc
. 2017 Jul;
163(6):A1010-A1012.
PMID: 28690337
The development of Li focused ion beams (Li-FIB) enables controlled Li ion insertion into materials with nanoscale resolution. We take the first step toward establishing the relevance of the Li-FIB...
12.
Oleshko V, Herzing A, Twedt K, Griebel J, McClelland J, Pyun J, et al.
Langmuir
. 2017 Jun;
33(37):9361-9377.
PMID: 28616993
We report the characterization of multiscale 3D structural architectures of novel poly[sulfur-random-(1,3-diisopropenylbenzene)] copolymer-based cathodes for high-energy-density Li-S batteries capable of realizing discharge capacities >1000 mAh/g and long cycling lifetimes >500...
13.
Frieberg B, Page K, Graybill J, Walker M, Stafford C, Stafford G, et al.
ACS Appl Mater Interfaces
. 2016 Dec;
8(48):33240-33249.
PMID: 27934151
Perfluorinated ionomers, in particular, Nafion, are a critical component in hydrogen fuel cells as the ion conducting binder within the catalyst layer in which it can be confined to thicknesses...
14.
Oleshko V, Herzing A, Soles C, Griebel J, Chung W, Simmonds A, et al.
Microsc Microanal
. 2016 Nov;
22(6):1198-1221.
PMID: 27881211
Poly[sulfur-random-(1,3-diisopropenylbenzene)] copolymers synthesized via inverse vulcanization represent an emerging class of electrochemically active polymers recently used in cathodes for Li-S batteries, capable of realizing enhanced capacity retention (1,005 mAh/g at...
15.
Dirlam P, Park J, Simmonds A, Domanik K, Arrington C, Schaefer J, et al.
ACS Appl Mater Interfaces
. 2016 May;
8(21):13437-48.
PMID: 27171646
The practical implementation of Li-S technology has been hindered by short cycle life and poor rate capability owing to deleterious effects resulting from the varied solubilities of different Li polysulfide...
16.
Herzing A, Ro H, Soles C, DeLongchamp D
ACS Nano
. 2013 Aug;
7(9):7937-44.
PMID: 23930979
The morphology of the active layer in an organic photovoltaic bulk-heterojunction device is controlled by the extent and nature of phase separation during processing. We have studied the effects of...
17.
Lee J, Ro H, Huang R, Lemaillet P, Germer T, Soles C, et al.
Nano Lett
. 2012 Oct;
12(11):5995-9.
PMID: 23088734
By combining surface wrinkling and nanopatterned polymer films, we create anisotropic, hierarchical surfaces whose larger length-scale (wrinkling wavelength) depends intimately on the geometry and orientation of the smaller length-scale (nanopattern)....
18.
Hammond M, Kline R, Herzing A, Richter L, Germack D, Ro H, et al.
ACS Nano
. 2011 Sep;
5(10):8248-57.
PMID: 21939254
We report quantitative measurements of ordering, molecular orientation, and nanoscale morphology in the active layer of bulk heterojunction (BHJ) organic photovoltaic cells based on a thieno[3,4-b]thiophene-alt-benzodithiophene copolymer (PTB7), which has...
19.
OConnor B, Chan E, Chan C, Conrad B, Richter L, Kline R, et al.
ACS Nano
. 2010 Nov;
4(12):7538-44.
PMID: 21080648
The elastic moduli of polythiophenes, regioregular poly(3-hexylthiophene) (P3HT) and poly-(2,5-bis(3-alkylthiophene-2-yl)thieno[3,2-b]thiophene) (pBTTT), are compared to their field effect mobility showing a proportional trend. The elastic moduli of the films are measured...
20.
Sun J, Ding Y, Lin N, Zhou J, Ro H, Soles C, et al.
Biomacromolecules
. 2010 Oct;
11(11):3067-72.
PMID: 20954734
Nanoscale surface features that mimic extracellular matrix are critical environmental cues for cell contact guidance and are vital in advanced medical devices in order to manipulate cell behaviors. Among them,...