Efficient Ternary Mn-Based Spinel Oxide with Multiple Active Sites for Oxygen Evolution Reaction Discovered via High-Throughput Screening Methods (doi:10.21979/N9/CUJXTP)

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Part 2: Study Description
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Document Description

Citation

Title:

Efficient Ternary Mn-Based Spinel Oxide with Multiple Active Sites for Oxygen Evolution Reaction Discovered via High-Throughput Screening Methods

Identification Number:

doi:10.21979/N9/CUJXTP

Distributor:

DR-NTU (Data)

Date of Distribution:

2023-10-03

Version:

1

Bibliographic Citation:

Ahmed, Mahmoud, 2023, "Efficient Ternary Mn-Based Spinel Oxide with Multiple Active Sites for Oxygen Evolution Reaction Discovered via High-Throughput Screening Methods", https://doi.org/10.21979/N9/CUJXTP, DR-NTU (Data), V1

Study Description

Citation

Title:

Efficient Ternary Mn-Based Spinel Oxide with Multiple Active Sites for Oxygen Evolution Reaction Discovered via High-Throughput Screening Methods

Identification Number:

doi:10.21979/N9/CUJXTP

Authoring Entity:

Ahmed, Mahmoud (Nanyang Technological University)

Software used in Production:

Origin

Grant Number:

Prime Minister’s Office, Singapore, under its Campus of Research Excellence and Technological Enterprise (CREATE) program

Grant Number:

MOE2019-T2-1-163

Grant Number:

Tier 1 grant 2020-T1-001-147(RG64/20)

Grant Number:

Tier 2 grant (MOE T2EP50120-00081

Distributor:

DR-NTU (Data)

Access Authority:

Ahmed, Mahmoud

Depositor:

Ahmed, Mahmoud

Date of Deposit:

2023-09-28

Holdings Information:

https://doi.org/10.21979/N9/CUJXTP

Study Scope

Keywords:

Engineering, Engineering, High-throughput methods, Oxygen evolution reaction, Spinel oxides

Abstract:

The dataset contains the raw data for the paper published in Small (Nano&Micro) titled as: Efficient Ternary Mn-Based Spinel Oxide with Multiple Active Sites for Oxygen Evolution Reaction Discovered via High-Throughput Screening Methods

Kind of Data:

Experimental data

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Identification Number:

10.1002/smll.202204520

Bibliographic Citation:

Ahmed, M. G., Tay, Y. F., Chi, X., Zhang, M., Tan, J. M. R., Chiam, S. Y., ... & Wong, L. H. (2023). Efficient Ternary Mn‐Based Spinel Oxide with Multiple Active Sites for Oxygen Evolution Reaction Discovered via High‐Throughput Screening Methods. Small, 19(2), 2204520.

Citation

Identification Number:

10356/164707

Bibliographic Citation:

Ahmed, M. G., Tay, Y. F., Chi, X., Zhang, M., Tan, J. M. R., Chiam, S. Y., Rusydi, A. & Wong, L. H. (2023). Efficient ternary mn-based spinel oxide with multiple active sites for oxygen evolution reaction discovered via high-throughput screening methods. Small, 19(2), 2204520-.

Other Study-Related Materials

Label:

Raw data for Small paper.pptx

Notes:

application/vnd.openxmlformats-officedocument.presentationml.presentation