Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters Acetylcholine and Dopamine

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Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine
Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

a… Electrode configurations, b… a SEM photo showing the probe tip

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

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Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Promotion of Electrocatalytic Hydrogen Evolution Reaction on Nitrogen-Doped Carbon Nanosheets with Secondary Heteroatoms

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Graphene Quantum Dots/Multiwalled Carbon Nanotubes Composite-Based Electrochemical Sensor for Detecting Dopamine Release from Living Cells

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters Acetylcholine and Dopamine

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Cu-based MOF-derived architecture with Cu/Cu2O nanospheres anchored on porous carbon nanosheets for efficient capacitive deionization - ScienceDirect

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Paramasivam BALASUBRAMANIAN, Post-Doctoral, Doctor of Philosophy, Pusan National University, Busan, PNU, School of Materials Science and Engineering

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Ultra-fast degradation of phenolics and dyes by Cu2O/Cu catalysts: Synthesis and degradation kinetics - ScienceDirect

Rational Design of Cu@Cu2O Nanospheres Anchored B, N Co-doped Mesoporous  Carbon: A Sustainable Electrocatalyst To Assay Eminent Neurotransmitters  Acetylcholine and Dopamine

Highly sensitive non-enzymatic glucose sensor based on CoCu@MC derived from CoCu/melamine cyanurate superstructures - ScienceDirect