Replication Data for: Mesoporous Titanium Oxynitride Monoliths from Block Directed Self-Assembly of Metal−Urea Additives (doi:10.21979/N9/DXXKPP)

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Part 1: Document Description
Part 2: Study Description
Part 3: Data Files Description
Part 4: Variable Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Replication Data for: Mesoporous Titanium Oxynitride Monoliths from Block Directed Self-Assembly of Metal−Urea Additives

Identification Number:

doi:10.21979/N9/DXXKPP

Distributor:

DR-NTU (Data)

Date of Distribution:

2020-12-27

Version:

2

Bibliographic Citation:

Tan, Kwan Wee; Li, Yun; Horia, Raymond; Tan, Wei Xin; Larbaram, Nathawat; Sasangka, Wardhana A.; Manalastas, William, Jr.; Madhavi, Srinivasan; Tan, Kwan Wee, 2020, "Replication Data for: Mesoporous Titanium Oxynitride Monoliths from Block Directed Self-Assembly of Metal−Urea Additives", https://doi.org/10.21979/N9/DXXKPP, DR-NTU (Data), V2, UNF:6:aROrXPRg3zyDgJHD9Aoy2Q== [fileUNF]

Study Description

Citation

Title:

Replication Data for: Mesoporous Titanium Oxynitride Monoliths from Block Directed Self-Assembly of Metal−Urea Additives

Identification Number:

doi:10.21979/N9/DXXKPP

Authoring Entity:

Tan, Kwan Wee (Nanyang Technological University)

Li, Yun (Nanyang Technological University)

Horia, Raymond (Nanyang Technological University)

Tan, Wei Xin (Nanyang Technological University)

Larbaram, Nathawat (Nanyang Technological University)

Sasangka, Wardhana A. (Nanyang Technological University)

Manalastas, William, Jr. (Nanyang Technological University)

Madhavi, Srinivasan (Nanyang Technological University)

Tan, Kwan Wee (Nanyang Technological University)

Software used in Production:

Notepad, Origin Viewer

Grant Number:

Startup grant

Grant Number:

Investigatorship Award NRFI 2017-08

Distributor:

DR-NTU (Data)

Access Authority:

Tan, Kwan Wee

Depositor:

Tan, Kwan Wee

Date of Deposit:

2020-12-27

Holdings Information:

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

Study Scope

Keywords:

Chemistry, Engineering, Chemistry, Engineering, Self assembly, mesoporous, titanium oxynitride, hydrogen evolution, block copolymer

Abstract:

Abstract: This report describes a simple one-pot soft-templating and ammonolysis-free approach to synthesize mesoporous crystalline titanium oxynitride by combining block copolymer-directed self-assembly with metal sol and urea precursors. The Pluronic F127 triblock copolymer was employed to structure-direct titanium-oxo-acetate sol nanoparticles and urea–formaldehyde into ordered hybrid mesostructured monoliths. The hybrid composites were directly converted into mesoporous crystalline titanium oxynitride and retained macroscale monolithic integrity up to 800 °C under nitrogen. Notably, the urea–formaldehyde additive provided nitrogen and rigid support to the inorganic mesostructure during crystallization. The resultant mesoporous titanium oxynitride exhibited good electrochemical catalytic activity toward hydrogen evolution reaction in 1 M KOH aqueous medium under applied bias. Our results suggest an inexpensive and safe pathway to generate ordered mesoporous crystalline metal oxynitride structures suitable for catalyst and energy-storage applications.

Kind of Data:

Experimental Data

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Identification Number:

10.1021/acs.langmuir.0c01729

Bibliographic Citation:

Li, Y., Horia, R., Tan, W. X., Larbaram, N., Sasangka, W. A., Manalastas Jr, W., ... & Tan, K. W. (2020). Mesoporous Titanium Oxynitride Monoliths from Block Copolymer-Directed Self-Assembly of Metal–Urea Additives. Langmuir, 36(36), 10803-10810.

Citation

Identification Number:

10356/144044

Bibliographic Citation:

Li, Y., Horia, R., Tan, W. X., Larbaram, N., Sasangka, W. A., Manalastas Jr, W., ... & Tan, K. W. (2020). Mesoporous Titanium Oxynitride Monoliths from Block Copolymer-Directed Self-Assembly of Metal–Urea Additives. Langmuir, 36(36), 10803-10810.

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TEM TiON.tif

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