111 - 118 |
Enhancing the electrochemical performance of lithium sulfur batteries using cetyl trimethylammonium bromide coated separator Cho SH, Cho SM, Bae KY, Kim BH, Son BD, Yoon WY |
119 - 133 |
Promoted activity of nitrogen-doped activated carbon as a highly efficient oxygen reduction catalyst in microbial fuel cells Liu Y, Liu ZM |
135 - 150 |
Effect of plasma power on the semiconducting behavior of low-frequency PECVD TiO2 and nitrogen-doped TiO2 anodic thin coatings: photo-electrochemical studies in a single compartment cell for hydrogen generation by solar water splitting Youssef L, Roualdes S, Bassil J, Zakhour M, Rouessac V, Lamy C, Nakhl M |
151 - 162 |
Improved accessibility of porous carbon electrodes with surfactant ionic liquids for supercapacitors Xu NJ, Klein JM, Huang P, Alwusaydi HA, Mann EK, Gurkan BE |
163 - 177 |
Electrodeposited zinc phosphate hydrate electrodes for electrocatalytic applications Chennah A, Naciri Y, Taoufyq A, Bakiz B, Bazzi L, Guinneton F, Villain S, Gavarri JR, Benlhachemi A |
179 - 194 |
Poly(aniline-co-o-anisidine)/graphene oxide Au nanocomposites for dopamine electrochemical sensing application Ganash AA, Alqarni SA, Hussein MA |
195 - 205 |
Electrochemical detection of Cr(VI) with carbon nanotubes decorated with gold nanoparticles Breslin CB, Branagan D, Garry LM |
207 - 216 |
Investigation of electrochemical reaction mechanism for antimony selenide nanocomposite for sodium-ion battery electrodes Choi JH, Lee MH, Choi HY, Park CM, Lee SM, Choi JH |
217 - 227 |
A high-performance, disposable screen-printed carbon electrode modified with multi-walled carbon nanotubes/graphene for ultratrace level electrochemical sensors Pasakon P, Mensing JP, Phokaratkul D, Karuwan C, Lomas T, Wisitsoraat A, Tuantranont A |
229 - 239 |
A nitric oxide sensor fabricated through e-jet printing towards use in bioelectronics interfaces Myers RT, Ayers J |