Jie Zhang
Jie Zhang
Verified email at monash.edu - Homepage
Cited by
Cited by
Ionic liquids and their solid-state analogues as materials for energy generation and storage
DR MacFarlane, M Forsyth, PC Howlett, M Kar, S Passerini, JM Pringle, ...
Nature Reviews Materials 1 (2), 1-15, 2016
Hierarchical Mesoporous SnO2 Nanosheets on Carbon Cloth: A Robust and Flexible Electrocatalyst for CO2 Reduction with High Efficiency and Selectivity
F Li, L Chen, GP Knowles, DR MacFarlane, J Zhang
Angewandte Chemie 129 (2), 520-524, 2017
Practical considerations associated with voltammetric studies in room temperature ionic liquids
J Zhang, AM Bond
Analyst 130 (8), 1132-1147, 2005
Changing the look of voltammetry
AM Bond, NW Duffy, SX Guo, J Zhang, D Elton
Analytical chemistry 77 (9), 186 A-195 A, 2005
Single-boron catalysts for nitrogen reduction reaction
C Liu, Q Li, C Wu, J Zhang, Y Jin, DR MacFarlane, C Sun
Journal of the American Chemical Society 141 (7), 2884-2888, 2019
Towards a better Sn: efficient electrocatalytic reduction of CO2 to formate by Sn/SnS2 derived from SnS2 nanosheets
F Li, L Chen, M Xue, T Williams, Y Zhang, DR MacFarlane, J Zhang
Nano Energy 31, 270-277, 2017
Conditions required to achieve the apparent equivalence of adhered solid-and solution-phase voltammetry for ferrocene and other redox-active solids in ionic liquids
J Zhang, AM Bond
Analytical chemistry 75 (11), 2694-2702, 2003
Graphene-supported [{Ru 4 O 4 (OH) 2 (H 2 O) 4}(γ-SiW 10 O 36) 2] 10− for highly efficient electrocatalytic water oxidation
SX Guo, Y Liu, CY Lee, AM Bond, J Zhang, YV Geletii, CL Hill
Energy & Environmental Science 6 (9), 2654-2663, 2013
Polyethylenimine promoted electrocatalytic reduction of CO 2 to CO in aqueous medium by graphene-supported amorphous molybdenum sulphide
F Li, SF Zhao, L Chen, A Khan, DR MacFarlane, J Zhang
Energy & Environmental Science 9 (1), 216-223, 2016
Utilization of nanoparticle labels for signal amplification in ultrasensitive electrochemical affinity biosensors: a review
L Ding, AM Bond, J Zhai, J Zhang
Analytica chimica acta 797, 1-12, 2013
Unlock the Electrocatalytic Activity of Antimony for CO2 Reduction by 2D Engineering
F Li, M Xue, J Li, X Ma, L Chen, X Zhang, D MacFarlane, J Zhang
Angewandte Chemie International Edition, 2017
Resistance, capacitance, and electrode kinetic effects in fourier-transformed large-amplitude sinusoidal voltammetry: Emergence of powerful and intuitively obvious tools for …
AA Sher, AM Bond, DJ Gavaghan, K Harriman, SW Feldberg, NW Duffy, ...
Analytical chemistry 76 (21), 6214-6228, 2004
Recent advances in the nanoengineering of electrocatalysts for CO 2 reduction
F Li, DR MacFarlane, J Zhang
Nanoscale 10 (14), 6235-6260, 2018
A DNA biosensor based on the detection of doxorubicin-conjugated Ag nanoparticle labels using solid-state voltammetry
BP Ting, J Zhang, Z Gao, JY Ying
Biosensors and Bioelectronics 25 (2), 282-287, 2009
Voltammetric studies on the reduction of polyoxometalate anions in ionic liquids
J Zhang, AM Bond, DR MacFarlane, SA Forsyth, JM Pringle, AWA Mariotti, ...
Inorganic chemistry 44 (14), 5123-5132, 2005
Fourier transform large-amplitude alternating current cyclic voltammetry of surface-bound azurin
S Guo, J Zhang, DM Elton, AM Bond
Analytical Chemistry 76 (1), 166-177, 2004
Conversion of dinitrogen to ammonia on Ru atoms supported on boron sheets: a DFT study
C Liu, Q Li, J Zhang, Y Jin, DR MacFarlane, C Sun
Journal of Materials Chemistry A 7 (9), 4771-4776, 2019
A critical assessment of electrochemistry in a distillable room temperature ionic liquid, DIMCARB
AI Bhatt, AM Bond, DR MacFarlane, J Zhang, JL Scott, CR Strauss, ...
Green Chemistry 8 (2), 161-171, 2006
Ultrasensitive Electrochemical DNA Biosensors Based on the Detection of a Highly Characteristic Solid‐State Process
J Zhang, BP Ting, NR Jana, Z Gao, JY Ying
Small 5 (12), 1414-1417, 2009
Formation of lattice-dislocated bismuth nanowires on copper foam for enhanced electrocatalytic CO 2 reduction at low overpotential
X Zhang, X Sun, SX Guo, AM Bond, J Zhang
Energy & Environmental Science 12 (4), 1334-1340, 2019
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