Organisation profile
Organisation profile
Advanced Materials and Molecular Synthesis Lab is dedicated to the development of innovative synthetic strategies for a broad spectrum of functional materials and molecules. Our research emphasizes the precise design and controlled fabrication of materials with tunable structures, compositions, and properties to meet the specific demands of advanced applications. We explore a diverse array of materials, including low-dimensional nanomaterials, hybrid organic-inorganic systems, and molecular assemblies, targeting applications in catalysis, renewable energy, environmental remediation, sensing technologies, and biomedical platforms. The lab integrates green chemistry principles, mechanistic understanding, and structure–function correlations to guide material synthesis and optimization. By combining solution-phase chemistry, hydrothermal techniques, electrochemical methods, and post-synthetic modifications, we aim to advance both the fundamental understanding and practical implementation of next-generation materials.
Fingerprint
Collaborations and top research areas from the last five years
Profiles
-
Designing Novel Anticancer Agents through Hybridization of Coumarin, Chalcone, and 1,2,3-Triazole Frameworks
Ardiansah, B. (PI)
22/10/25 → 24/08/26
Project: Research
-
Oksidasi Selektif Toluena Menggunakan Katalis Oksida Logam Berdimensi Rendah
Yunarti, R. T. (PI)
22/10/25 → 24/08/26
Project: Research
-
Enhancement of photoelectrochemical water oxidation of surface-modified BiVO4/TiO2(001) via efficient cascade hole transfer
Khalil, M., Wahidah, H., Ivandini, T. A., Kadja, G. T. M., Pratomo, U., Avicenna, M. N., Mulyana, J. Y., Abdi, F. F. & Rusydi, A., 15 Aug 2026, In: Fuel. 418, 138789.Research output: Contribution to journal › Article › peer-review
-
Nanomaterial-based electrochemical sensors for phenolic antioxidants in foods and beverages: From design to device translation
Hermawan, A., Aris, A., Khalil, M., Wulan Septiani, N. L., Estiasih, T., Ray, H. R. D., Palma, M. & Setyaningsih, W., Mar 2026, In: Methods. 247, p. 132-160 29 p.Research output: Contribution to journal › Article › peer-review
-
Surface modification of BiVO4 with TiO2 (001) and Ti3C2 MXene to enhance photoelectrochemical water oxidation
Maulana, I. A., Romdoni, Y., Wibowo, Y. R., Hermawan, A., Umar, A., Nugroho, F. A. A., Aroua, M. K., Abdi, F. F. & Khalil, M., Jun 2026, In: Materials Research Bulletin. 199, 114043.Research output: Contribution to journal › Article › peer-review