Lowering the temperature of solid oxide fuel cells ED Wachsman, KT Lee Science 334 (6058), 935-939, 2011 | 2591 | 2011 |
Role of solid oxide fuel cells in a balanced energy strategy ED Wachsman, CA Marlowe, KT Lee Energy & Environmental Science 5 (2), 5498-5509, 2012 | 349 | 2012 |
High-performance bilayered electrolyte intermediate temperature solid oxide fuel cells JS Ahn, D Pergolesi, MA Camaratta, H Yoon, BW Lee, KT Lee, DW Jung, ... Electrochemistry Communications 11 (7), 1504-1507, 2009 | 145 | 2009 |
Dependence of open-circuit potential and power density on electrolyte thickness in solid oxide fuel cells with mixed conducting electrolytes KL Duncan, KT Lee, ED Wachsman Journal of Power Sources 196 (5), 2445-2451, 2011 | 125 | 2011 |
Free-Standing Na2/3Fe1/2Mn1/2O2@Graphene Film for a Sodium-Ion Battery Cathode H Zhu, KT Lee, GT Hitz, X Han, Y Li, J Wan, S Lacey, AW Cresce, K Xu, ... ACS applied materials & interfaces 6 (6), 4242-4247, 2014 | 98 | 2014 |
Rational design of lower‐temperature solid oxide fuel cell cathodes via nanotailoring of co‐assembled composite structures KT Lee, AA Lidie, HS Yoon, ED Wachsman Angewandte Chemie International Edition 53 (49), 13463-13467, 2014 | 92 | 2014 |
The evolution of low temperature solid oxide fuel cells KT Lee, HS Yoon, ED Wachsman Journal of Materials Research 27 (16), 2063-2078, 2012 | 92 | 2012 |
Enhancing Electrochemical CO2 Reduction using Ce(Mn,Fe)O2 with La(Sr)Cr(Mn)O3 Cathode for High‐Temperature Solid Oxide Electrolysis Cells S Lee, M Kim, KT Lee, JTS Irvine, TH Shin Advanced Energy Materials 11 (24), 2100339, 2021 | 77 | 2021 |
Interfacial modification of La0. 80Sr0. 20MnO3− δ–Er0. 4Bi0. 6O3 cathodes for high performance lower temperature solid oxide fuel cells KT Lee, DW Jung, HS Yoon, AA Lidie, MA Camaratta, ED Wachsman Journal of Power Sources 220, 324-330, 2012 | 74 | 2012 |
Functionally graded bismuth oxide/zirconia bilayer electrolytes for high-performance intermediate-temperature solid oxide fuel cells (IT-SOFCs) DW Joh, JH Park, D Kim, ED Wachsman, KT Lee ACS applied materials & interfaces 9 (10), 8443-8449, 2017 | 70 | 2017 |
Gd0. 1Ce0. 9O1. 95/Er0. 4Bi1. 6O3 bilayered electrolytes fabricated by a simple colloidal route using nano-sized Er0. 4Bi1. 6O3 powders for high performance low temperature … KT Lee, DW Jung, MA Camaratta, HS Yoon, JS Ahn, ED Wachsman Journal of Power Sources 205, 122-128, 2012 | 70 | 2012 |
Multiscale structured low-temperature solid oxide fuel cells with 13 W power at 500 C SS Shin, JH Kim, KT Bae, KT Lee, SM Kim, JW Son, M Choi, H Kim Energy & Environmental Science 13 (10), 3459-3468, 2020 | 68 | 2020 |
Self-Assembled Bi2MoO6 Nanopetal Array on Carbon Spheres toward Enhanced Supercapacitor Performance KJ Samdani, JH Park, DW Joh, KT Lee ACS Sustainable Chemistry & Engineering 6 (12), 16702-16712, 2018 | 68 | 2018 |
Role of nanostructures on SOFC performance at reduced temperatures KT Lee, ED Wachsman Mrs Bulletin 39 (9), 783-791, 2014 | 67 | 2014 |
A Highly Active and Redox-Stable SrGdNi0.2Mn0.8O4±δ Anode with in Situ Exsolution of Nanocatalysts KJ Kim, MK Rath, HH Kwak, HJ Kim, JW Han, ST Hong, KT Lee ACS Catalysis 9 (2), 1172-1182, 2019 | 64 | 2019 |
Comprehensive quantification of Ni–Gd0. 1Ce0. 9O1. 95 anode functional layer microstructures by three-dimensional reconstruction using a FIB/SEM dual beam system KT Lee, NJ Vito, ED Wachsman Journal of power sources 228, 220-228, 2013 | 62 | 2013 |
Highly functional nano-scale stabilized bismuth oxides via reverse strike co-precipitation for solid oxide fuel cells KT Lee, AA Lidie, SY Jeon, GT Hitz, SJ Song, ED Wachsman Journal of Materials Chemistry A 1 (20), 6199-6207, 2013 | 62 | 2013 |
High performance zirconia-bismuth oxide nanocomposite electrolytes for lower temperature solid oxide fuel cells DW Joh, JH Park, DY Kim, BH Yun, KT Lee Journal of Power Sources 320, 267-273, 2016 | 59 | 2016 |
Development of high performance ceria/bismuth oxide bilayered electrolyte SOFCs for lower temperature operation JS Ahn, MA Camaratta, D Pergolesi, KT Lee, H Yoon, BW Lee, DW Jung, ... Journal of the Electrochemical Society 157 (3), B376, 2010 | 55 | 2010 |
Highly active and durable double-doped bismuth oxide-based oxygen electrodes for reversible solid oxide cells at reduced temperatures BH Yun, KJ Kim, DW Joh, MS Chae, JJ Lee, D Kim, S Kang, D Choi, ... Journal of Materials Chemistry A 7 (36), 20558-20566, 2019 | 54 | 2019 |