1 |
Renewable energy for Puerto Rico Massol-Deya A, Stephens JC, Colon JL Science, 362(6410), 7, 2018 |
2 |
States of transmission: Moving towards large-scale wind power Fischlein M, Wilson EJ, Peterson TR, Stephens JC Energy Policy, 56, 101, 2013 |
3 |
Assessing innovation in emerging energy technologies: Socio-technical dynamics of carbon capture and storage (CCS) and enhanced geothermal systems (EGS) in the USA Stephens JC, Jiusto S Energy Policy, 38(4), 2020, 2010 |
4 |
Policy stakeholders and deployment of wind power in the sub-national context: A comparison of four US states Fischlein M, Larson J, Hall DM, Chaudhry R, Peterson TR, Stephens JC, Wilson EJ Energy Policy, 38(8), 4429, 2010 |
5 |
Global learning on carbon capture and storage: A call for strong international cooperation on CCS demonstration de Coninck H, Stephens JC, Metz B Energy Policy, 37(6), 2161, 2009 |
6 |
Theoretical study of the alkoxy radicals derived from isoprene: Pressure- and temperature-dependent decomposition rates Park J, Stephens JC, Zhang RY, North SW Journal of Physical Chemistry A, 107(33), 6408, 2003 |
7 |
Copper(II) acetate complexes, [CuLm(OAc)(2)](n) (L = HNPPh3), stable in the solid state either as a dimer (m=1, n=2) or a monomer (m=2, n=1) Stephens JC, Khan MA, Houser RP Inorganic Chemistry, 40(20), 5064, 2001 |
8 |
Three lowest-lying electronic states of NH2 Yamaguchi Y, Hoffman BC, Stephens JC, Schaefer HF Journal of Physical Chemistry A, 103(38), 7701, 1999 |
9 |
(X)over-tilde(3)B(1), (a)over-tilde(1)A(1), (b)over-tilde(1)B(1), and (c)over-tilde(1)Sigma(+)(g) electronic states of NH2+ Stephens JC, Yamaguchi Y, Sherrill CD, Schaefer HF Journal of Physical Chemistry A, 102(22), 3999, 1998 |
10 |
Quantum-Mechanical Frequencies and Matrix Assignments to Al2H2 Stephens JC, Bolton EE, Schaefer HF, Andrews L Journal of Chemical Physics, 107(1), 119, 1997 |