Center of Excellence

Applied Nanotechnology

Our team conducted research and development to enhance human beings living standards by implementing nanotechnology in aquaculture, agriculture, electronics, and material. In its implementation, we focus on developing innovative products with nanotechnology applications in nano-processing, nano-formulation, and nanomaterials.


Our research focuses on aquaculture, agriculture, painting and coating, functional nanomaterials, instrumentation, mechatronics, and IT. Our team comprises various disciplines (metallurgy, material engineering, business, physics, and agriculture). Different scientific disciplines maintain the value of cooperation in our team to produce high-value products.

Vision

  • To become a center for the development of nanotechnology-based research and products in various scientific disciplines
  • Improving the living standard by producing supporting products based on nanotechnology

Mission

  • To become a division capable of providing and producing innovative nanotechnology-based products in various fields
  • providing guidance and consulting services, and research related to the fields of food, technology, and materials
  • Conduct services and assays on a laboratory scale and pilot scale related to innovative products to improve our life
  • Maintaining good relations and collaborating with divisions that are members of the Nano center Indonesia foundation as well as various related agencies and educational institutions in Indonesia, both nationally and international

Our

PEOPLE

Dr. Abu Saad Aqueel Ahmad Ansari

saad@nano.or.id

Qhintharani Zata Sastiqa

qintazatas@gmail.com

Khansa Latifah

khansa.lathifah16@gmail.com

Yulianti Anjarsari

yulianti@nano.or.id

Abdan Qolbun Salim

abdanqolbunsalim1707@gmail.com

Arief Dwi Rohman

adwi7108@gmail.com

Yahya Muhammad

2yahyamuhammad@gmail.com

Muhammad Syarif Hidayatullah

rif.hidayat013@gmail.com

Agnest Andini

andiniagnest@gmail.com

Afina Faza Hafiyyan

afina.fhafiyyan@gmail.com

Raden Ayu Nurul Khotimah

nkhotimah572@gmail.com

Duwi Damayanti

adwi7108@gmail.com

Wahyu Fitri Yanto

wahyufitri890@gmail.com

Sarah Syahidah

sarah.syahidah@nano.or.id

Dr. Fauzan Ali

Bambang Teguh Sudiyono

Prayudho Gutomo

Suryadi, MT

Andi Wahyu Indrayana

nanda Hendra Pratama

Dedi Hernawan

Usman Abdulaziz

Rif'ani Karima Dewi

rifanikade@gmail.com

Naufal Bintang Akbar

naufal_bintang@sbm-itb.ac.id

Fauzan Adzima Hawari

fauzanhawa97@gmail.com

Arzenico Apta Gustafausta

aptaarzenico@gmail.com

Andyan Rafi Setopratama

rafi.nadra@gmail.com

Our

ALUMNI

Fani Rahayu Hidayah Rayanisaputri

fanyrayanisaputri@gmail.com

Rifda Azzahiidah

rifda@nano.or.id

Research

Our Research Area

Our Projects


News

Our

PAPERS

Articles

Title
2025
Ansari, A. S., Azzahra, G., Nugroho, F. G., Mujtaba, M. M., & Ahmed, A. T. A. (2025). Oxides and Metal Oxide/Carbon hybrid materials for efficient photocatalytic organic pollutant removal. Catalysts, 15(2), 134. https://doi.org/10.3390/catal15020134. Q2
2024
Syaifie, P. H., Ibadillah, D., Jauhar, M. M., Reninta, R., Ningsih, S., Ramadhan, D., Arda, A. G., Ningrum, D. W. C., Kaswati, N. M. N., Rochman, N. T., & Mardliyati, E. (2024). Phytochemical profile, antioxidant, enzyme inhibition, acute toxicity, in silico molecular docking and dynamic analysis of Apis mellifera propolis as antidiabetic supplement. Chemistry & Biodiversity, 21(6). https://doi.org/10.1002/cbdv.202400433. Q2
Siregar, K. a. a. K., Syaifie, P. H., Jauhar, M. M., Arda, A. G., Rochman, N. T., Kustiawan, P. M., & Mardliyati, E. (2024). Revealing curcumin therapeutic targets on SRC, PPARG, MAPK8 and HSP90 as liver cirrhosis therapy based on comprehensive bioinformatic study. Journal of Biomolecular Structure and Dynamics, 1–18. https://doi.org/10.1080/07391102.2023.2301534. Q2
Rafryanto, A. F., Ramadina, Z. D. P., Nur’aini, S., Arrosyid, B. H., Zulfi, A., Rochman, N. T., Noviyanto, A., & Arramel, N. (2024). High recovery of ceramic membrane cleaning remediation by ozone nanobubble technology. ACS Omega, 9(10), 11484–11493. https://doi.org/10.1021/acsomega.3c08379. Q2
Subkhan, F., Maarif, M. S., Rochman, N. T., & Nugraha, Y. (2024). Digital Economy Reformulation and Economic Competitiveness of Smart Cities: An Application of Soft Systems Methodology. International Journal of Economics and Management, 18(2), 243–259. https://doi.org/10.47836/18.2.07. Q3
Rafryanto, A. F., Eka, N., Charlie, D. A., Diguna, L. J., Zhang, L., Rachmantyo, R., Wibowo, A., Rochman, N. T., Noviyanto, A., & Arramel, N. (2024). Effective Remediation Strategy for Acidic Wastewater: Integrating Ozone Nanobubbles with Sustainable Adsorption Techniques. ACS Sustainable Resource Management. https://doi.org/10.1021/acssusresmgt.4c00358. -
Nugroho, F. G., Ansari, A. S., Rochman, N. T., Khadtare, S. S., Sree, V. G., Shrestha, N. K., Hafiyyan, A. F., Im, H., & Ahmed, A. T. A. Utilizing Indonesian Empty Palm Fruit Bunches: Biochar Synthesis via Temperatures Dependent Pyrolysis .(2024). https://doi.org/10.3390/nano15010050. Q1
Subkhan, F., Maarif, M. S., Rochman, N. T., Nugraha, Y. Digital Economy: Reinforcing Competitive Economy of Smart Cities, A Fuzzy-AHP Approach.(2024). https://doi.org/10.1109/ICISS62896.2024.10751367. Q1
Irsyad, M., Pradana, Y. R. A., Ansari, A. S., Suprayitno, N., & Andoko, N. Influence of mold temperature on the compressive properties of Al-foam fabricated through vacuum casting. (2024). https://doi.org/10.1063/5.0198947. -
Pradana, Y. R. A., Wardana, M. S. A., Ansari, A. S., Aminnudin, A., Suryanto, H., & Andoko, A. Effect of fly ash particle addition on the compressive properties of reinforced open-cell Al foam.(2024). https://doi.org/10.1063/5.0198949. -
Kirana, R. R., Elisa, A. , Machfud, M. , Nurul T. R. The impact of knowledge vacuum to innovation process during public research organizations merger .(2024). https://doi.org/10.5937/sjm19-48504. Q3
Muhammad, Y., Hawari, F. A., Suryadi, N., Sastiqa, Q. Z., Rohman, A. D., Simamora, B., Saputra, A., Kurniawan, H., Ansari, A. S., & Rochman, N. T. Low-cost network-enabled dissolved oxygen sensor: Sensor linearity characteristic. (2024). https://doi.org/10.1016/j.matpr.2024.04.099. Q2
Wafiqah, A., Retnaningtyas, E., Wahyuni, D. S., Andini, A., Anjarsari, Y., Khotimah, R. A. N., Abdulaziz, U., Ansari, A. S., & Rochman, N. T. Jamu waste as liquid organic fertilizer (LOF) and its quality analysis. (2024). https://doi.org/10.1016/j.matpr.2024.03.057. Q2
Yanto, W. F., Salim, A. Q., Lathifah, K., Rohman, A. D., Suryadi, N., Azzahiidah, R., Ansari, A. S., & Rochman, N. T. Humidity sensors based on doped ZnO: An overview.(2024). https://doi.org/10.1016/j.matpr.2024.03.049. Q2
Hawari, F. A., Muhammad, Y., Suryadi, N., Salim, A. Q., Lathifah, K., Pradana, Y. R. A., Saputra, A., Kurniawan, H., Ansari, A. S., & Rochman, N. T. Study of Low-Cost Network-Enabled dissolved oxygen sensor.(2024). https://doi.org/10.1016/j.matpr.2024.03.021. Q2
Anjarsari, Y., Damayanti, D., Syahidah, S., Khotimah, R. A. N., Rayanisaputri, F. R. H., Abdulaziz, U., Nurhidayati, N., Ali, F., Ansari, A. S., & Rochman, N. T. Sensor technology in fish markers: A review. (2024). https://doi.org/10.1016/j.matpr.2024.03.019. Q2
Hafiyyan, A. F., Lathifah, K., Rayanisaputri, F. R. H., Syahidah, S., Khotimah, R. A. N., Ahmed, A. T. A., Ansari, A. S., & Rochman, N. T. Carbon dots based fluorescence sensor for P-nitrophenol. (2024). https://doi.org/10.1016/j.matpr.2024.03.015. Q2
Rohman, A. D., Subagja, R., Milandia, A., Yanto, W. F., Salim, A. Q., Pratama, N. H., Oediyani, S., Setiawan, I., Ansari, A. S., & Rochman, N. T. Solvent extraction of cobalt from artificial nickel sulphate solution using PC-88A organic solution as extractant.(2024). https://doi.org/10.1016/j.matpr.2024.03.014. Q2
Ahmed, A. T. A., Hafiyyan, A. F., Nurhidayati, N., Rayanisaputri, F. R. H., Alibrahim, K. A., Khadtare, S. S., Rahman, S., Alodhayb, A. N., Rochman, N. T., & Ansari, A. S. Thermal atomic layer deposition of aluminum oxide, nitride, and oxynitride: A mechanistic investigation. (2024). https://doi.org/10.1063/5.0190183. Q3
Mardiyanti , E., Setyawati, D.R., Ansari, A. S. A. A., Jauhar, M. M., & Syaifie, P.H. In Silico Study of Aluminum Phosphate as Vaccine Adjuvants: Exploring the Binding Interaction of Three Structures of Aluminum Phosphate with Lysozyme and Bovine Serum Albumin.(2024). https://doi.org/10.33263/BRIAC142.050. Q3
Ahmed, A. T. A., Sekar, S., Khadtare, S. S., Rochman, N. T., Chinna, B., & Ansari, A. S. Anion-exchange synthesis of an MnCo2S4 electrocatalyst towards facilitated ultralong hydrogen evolution reaction in acidic and alkaline media.(2024). https://doi.org/10.1039/D3CE01009K. Q2
2023
Arda, A. G., Syaifie, P. H., Ramadhan, D., Jauhar, M. M., Nugroho, D. W., Kaswati, N. M. N., Noviyanto, A., Safihtri, M., Rochman, N. T., Andrianto, D., & Mardliyati, E. (2023b). Activity of propolis compounds as potential MMP1 and MMP2 inhibitors by in silico studies in wound healing application. Journal of Pharmacy & Pharmacognosy Research, 12(2), 264–285. https://doi.org/10.56499/jppres23.1719_12.2.264. Q2
Wahono, W., Arnanda, I., Suyetno, A.G.U.S., Aminnudin, A.M.I.N.N.U.D.I.N., Ansari, A.S. and Pradana, Y.R.A., (2023) . Influence of Tool Rotation and Surface Roughness on the Shear Strength of Nylon 6-SS 304 Dissimilar Joint Resulted by Friction Lap Welding. Key Engineering Materials, 943, pp.47-53. Q4
Jauhar, M.M., Syaifie, P.H., Arda, A.G., Ramadhan, D., Nugroho, D.W., Kaswati, N.M.N., Noviyanto, A., Rochman, N.T. and Mardliyati, E., (2023) . Evaluation of propolis activity as sucrose-dependent and sucrose-independent Streptococcus mutans inhibitors to treat dental caries using an in silico approach. . Journal of Applied Pharmaceutical Science, 13(3), pp.071-080. Q2
Aryanto, D., Hastuti, E., Aisyah, S.M., Wismogroho, A.S., Basyir, A., Widayatno, W.B., Rochman, N.T., Handika, G. and Noviyanto, A., (2023) . Microstructure and oxidation resistance of Al50 (Fe–Cr)(50-x)(SiC) x composite coated low-carbon steel prepared by mechanical milling. Materials Chemistry and Physics, p.127389. Q1
Hutagalung, S.S., Rafryanto, A.F., Sun, W., Juliasih, N., Aditia, S., Jiang, J., Dipojono, H.K., Suhardi, S.H., Rochman, N.T. and Kurniadi, D., (2023) . Combination of ozone-based advanced oxidation process and nanobubbles generation toward textile wastewater recovery. Frontiers in Environmental Science, 11, p.354. Q2
Akbar, S., Nursyifaulkhair, D., Nurdiwijayanto, L., Noviyanto, A. and Rochman, N.T., (2023) . High temperature failure of steel boiler tube secondary superheater in a power plant.SINERGI https://dx.doi.org/10.22441/sinergi.2023.1.001 -
Tuti, M., Syarief, R., Anggraeni, E., Rochman, N. T. (2023). Increasing entrepreneurial competitiveness through entrepreneurial orientation. The Seybold Report Journal. https://osf.io/5dfkz/ -
Ahmed, A. T. A., Sekar, S., Khadtare, S. S., Rochman, N. T., Lee, S., Kim, H., Kim, D. Y., Im, H., & Ansari, A. S. (2023). Facilitated catalytic surface engineering of MnCo2O4 electrocatalyst towards enhanced oxygen evolution reaction. Journal of Electroanalytical Chemistry, 946, 117716. https://doi.org/10.1016/j.jelechem.2023.117716 -
Nurhidayati, N., Basit, A., Tito, S. I., Machfudz, M., & Ansari, A. S. (2023). Responses of soil respiration and organic carbon to organic soil amendments in upland paddy. Soil Science Annual, 74(2), 1–8. https://doi.org/10.37501/soilsa/169655 Q2
Aryanto, D., Hastuti, E., Aisyah, S. M., Wismogroho, A. S., Basyir, A., Widayatno, W. B., Rochman, N. T., Handika, G., & Noviyanto, A. (2023). Microstructure and oxidation resistance of Al50(Fe–Cr)(50-)(SiC) composite coated low-carbon steel prepared by mechanical milling. Materials Chemistry and Physics, 297, 127389. https://doi.org/10.1016/j.matchemphys.2023.127389 Q1
2022
Suryanto, H., Susilo, B. D., Maulana, J., Aminnudin, N., Yanuhar, U., Wonorahardjo, S., Wijaya, H. W., & Ansari, A. S. (2022). Characterization of nanocomposite membrane based bacterial cellulose made of pineapple waste reinforced by graphite nanoplatelets. Journal Of Renewable Materials, 10(9), 2455–2465. JOURNAL OF RENEWABLE MATERIALS. Q2
Nurhidayati, N., Ansari, A. S., Sholihah, A., & Chiangmai, P. N. (2022). Vermicompost and rice husk biochar interaction ameliorates nutrient uptake and yield of green lettuce under Soilless culture. Journal of Horticultural Research, 30(2), 55–66. 66. Journal of Horticultural Research Q3
Wu, Y.C., Ansari, A.S., Dutta, D., Hsiao, K.J., Lee, L.H., Lai, Y.L., Hsu, Y.J., Liao, T.W., Chou, J.P. and Luo, M.F., (2022) . Catalyzed Decomposition of Methanol-d 4 on Vanadium Nanoclusters Supported on an Ultrathin Film of Al2O3/NiAl (100). The Journal of Physical Chemistry C, 126(8), pp.3903-3914. Q1
Aqueel Ahmed, A.T., Ansari, A.S., Kim, H. and Im, H., (2022) . Ion‐exchange synthesis of microporous Co3S4 for enhanced electrochemical energy storage. International Journal of Energy Research, 46(4), pp.5315-5329. Q1
Ahmed, A. T. A., Sekar, S., Lee, S., Im, H., Preethi, V., & Ansari, A. S. (2022). Nitrogen-doped cobalt sulfide as an efficient electrocatalyst for hydrogen evolution reaction in alkaline and acidic media. International Journal of Hydrogen Energy, 47(95), 40340–40348. https://doi.org/10.1016/j.ijhydene.2022.04.076 Q1
Ahmed, A. T. A., Soni, R., Ansari, A. S., Lee, C. Y., Kim, H., Im, H., & Bathula, C. (2022). Biowaste-derived graphitic carbon interfaced TiO2 as anode for lithium-ion battery. Surfaces and Interfaces, 35, 102404. https://doi.org/10.1016/j.surfin.2022.102404 Q1
Ahmed, A. T. A., Lee, C. H., Ansari, A. S., Pawar, S., Han, J., Park, S., Shin, G., Yeon, S., Cho, S., Seol, J., Lee, S. U., Kim, H., & Im, H. (2022). Hybridized heterostructure of CoS and MoS2 nanoparticles for highly-efficient and robust bifunctional water electrolysis. Applied Surface Science, 592, 153196. https://doi.org/10.1016/j.apsusc.2022.153196 Q1
Pre - 2021
Rahmawati, A. I., Saputra, R. N., Hidayatullah, A., Dwiarto, A., Junaedi, H., Cahyadi, D., Saputra, H. K. H., Prabowo, W. T., Kartamiharja, U. K. A., Shafira, H., Noviyanto, A., & Rochman, N. T. (2020). Enhancement of Penaeus vannamei shrimp growth using nanobubble in indoor raceway pond. Aquaculture and Fisheries, 6(3), 277–282. https://doi.org/10.1016/j.aaf.2020.03.005 Q2
Mauladani, S., Rahmawati, A. I., Absirin, M. F., Saputra, R. N., Pratama, A. F., Hidayatullah, A., Dwiarto, A., Syarif, A., Junaedi, H., Cahyadi, D., Saputra, H. K. H., Prabowo, W. T., Kartamiharja, U. K. A., Noviyanto, A., & Rochman, N. T. (2020). Economic feasibility study of Litopenaeus vannamei shrimp farming: nanobubble investment in increasing harvest productivity. Deleted Journal, 19(1), 30–38. https://doi.org/10.19027/jai.19.1.30-38 -
Firman, S. W., Nirmala, K., Supriyono, E., & Rochman, N. T. T. (2019). Performance evaluation of micro bubble generator on physiological response of Nile tilapia Oreochromis niloticus (Linnaeus, 1758) farmed at different densities in recirculating aquaculture system. Jurnal Iktiologi Indonesia, 19(3), 425. https://doi.org/10.32491/jii.v19i3.504 -
Saputra, H. K., Nirmala, K., Supriyono, E., & Rochman, N. T. (2018). Micro/Nano Bubble Technology : Characteristics and Implications Biology Performance of Koi Cyprinus carpio in Recirculation Aquaculture System (RAS). Omni-Akuatika, 14(2). https://doi.org/10.20884/1.oa.2018.14.2.539 -

Patents

Title Patent No.
Thin film deposition method and method of fabricating electronic device using the same US20230227972A1
Metode Untuk Menghasilkan Gelembung Mikro Terlarut Dalam Air S00202301946
Laras Statis pada pompa pencampur dua jenis fluida untuk mencacah fluida terlarut menjadi partikel ultra halus S00202303496
Pelarut Semen Beku dan Metode Pembuatannya (Frozen Cement Solvent and Its Production Method). P00202004661
Teknologi Pembuatan Biodiesel dari Palm Sludge Oil (PSO) dengan Metode Transesterifikasi (Technology of Biodiesel Production from Palm Sludge Oil (PSO) by Transesterification Method). P00202003484
Mikro-Nano Bubble Mill Generator (Micro-Nano Bubble Mill Generator). P00201911817
Sistem dan Metode Pengolahan Air dan Gas/Udara untuk Menghasilkan Gelembung Berukuran Mikro-Nanometer. P00201903600