Tahun: 2023

99. P.T.P. Aryanti, M.Y. Afred, A.K. Wardani, G. Lugito, G.T.M. Kadja, I.G. Wenten, K. Khoiruddin. “Ultra low-pressure reverse osmosis (ULPRO) membrane for desalination: Current challenges and future directions”. Desalination, 560, 116650. (2023).

99. P.T.P. Aryanti, M.Y. Afred, A.K. Wardani, G. Lugito, G.T.M. Kadja, I.G. Wenten, K. Khoiruddin. “Ultra low-pressure reverse osmosis (ULPRO) membrane for desalination: Current challenges and future directions”. Desalination, 560, 116650. (2023).

99. P.T.P. Aryanti, M.Y. Afred, A.K. Wardani, G. Lugito, G.T.M. Kadja, I.G. Wenten, K. Khoiruddin. “Ultra low-pressure reverse osmosis (ULPRO) membrane for desalination: Current challenges and future directions”. Desalination, 560, 116650. (2023).

98. G.T.M. Kadja, N.T.U. Culsum, R.M. Putri. “Recent advances in the utilization of zeolite-based materials for controlled drug delivery”. Results in Chemistry, 5, 100910. (2023).

98. G.T.M. Kadja, N.T.U. Culsum, R.M. Putri. “Recent advances in the utilization of zeolite-based materials for controlled drug delivery”. Results in Chemistry, 5, 100910. (2023).

98. G.T.M. Kadja, N.T.U. Culsum, R.M. Putri. “Recent advances in the utilization of zeolite-based materials for controlled drug delivery”. Results in Chemistry, 5, 100910. (2023).

97. U. Pratomo, R.A. Pratama, A.P. Sulaeman, G.T.M. Kadja, M. Khalil, I. Primadona. “Enhancement of the ZnO nanotube photoelectrochemical performance by MXene layer”. Materials Letters 337, 133932. (2023).

97. U. Pratomo, R.A. Pratama, A.P. Sulaeman, G.T.M. Kadja, M. Khalil, I. Primadona. “Enhancement of the ZnO nanotube photoelectrochemical performance by MXene layer”. Materials Letters 337, 133932. (2023).

97. U. Pratomo, R.A. Pratama, A.P. Sulaeman, G.T.M. Kadja, M. Khalil, I. Primadona. “Enhancement of the ZnO nanotube photoelectrochemical performance by MXene layer”. Materials Letters 337, 133932. (2023).

96. M.M. Ilmi, E. Maryanti, N. Nurdini, R. Lebe, A.A. Oktaviana, B. Burhan, Y.L. Perston, P. Setiawan, Ismunandar, G.T.M. Kadja. “Uncovering the chemistry of color change in rock art in Leang Tedongnge (Pangkep Regency, South Sulawesi, Indonesia)”. Journal of Archaeological Science: Reports 48, 103871. (2023).

96. M.M. Ilmi, E. Maryanti, N. Nurdini, R. Lebe, A.A. Oktaviana, B. Burhan, Y.L. Perston, P. Setiawan, Ismunandar, G.T.M. Kadja. “Uncovering the chemistry of color change in rock art in Leang Tedongnge (Pangkep Regency, South Sulawesi, Indonesia)”. Journal of Archaeological Science: Reports 48, 103871. (2023).

96. M.M. Ilmi, E. Maryanti, N. Nurdini, R. Lebe, A.A. Oktaviana, B. Burhan, Y.L. Perston, P. Setiawan, Ismunandar, G.T.M. Kadja. “Uncovering the chemistry of color change in rock art in Leang Tedongnge (Pangkep Regency, South Sulawesi, Indonesia)”. Journal of Archaeological Science: Reports 48, 103871. (2023).

95. M.G. Wijanarko, A.J. Widagdo, M.S. Ismadji, K. Kusuma, M. Yuliana, S. Ismadji, S.B. Hartono, J. Lie, H. Shu, H. Abdullah, G.T.M. Kadja, C.J. Wijaya, F.E. Soetaredjo. “Utilization of APTES-functionalized coconut waste-based cellulose microfiber/zeolitic-imidazolate framework-8 composite for curcumin delivery”. Materials Today Sustainability, 21, 100332. (2023).

95. M.G. Wijanarko, A.J. Widagdo, M.S. Ismadji, K. Kusuma, M. Yuliana, S. Ismadji, S.B. Hartono, J. Lie, H. Shu, H. Abdullah, G.T.M. Kadja, C.J. Wijaya, F.E. Soetaredjo. “Utilization of APTES-functionalized coconut waste-based cellulose microfiber/zeolitic-imidazolate framework-8 composite for curcumin delivery”. Materials Today Sustainability, 21, 100332. (2023).

95. M.G. Wijanarko, A.J. Widagdo, M.S. Ismadji, K. Kusuma, M. Yuliana, S. Ismadji, S.B. Hartono, J. Lie, H. Shu, H. Abdullah, G.T.M. Kadja, C.J. Wijaya, F.E. Soetaredjo. “Utilization of APTES-functionalized coconut waste-based cellulose microfiber/zeolitic-imidazolate framework-8 composite for curcumin delivery”. Materials Today Sustainability, 21, 100332. (2023).

94. I. Khatrin, R.H. Kusuma, G.T.M. Kadja, Y.K. Krisnandi. “Significance of ZSM-5 hierarchical structure on catalytic cracking: Intra-vs inter-crystalline mesoporosity”. Inorganic Chemistry Communications 149, 110447. (2023).

94. I. Khatrin, R.H. Kusuma, G.T.M. Kadja, Y.K. Krisnandi. “Significance of ZSM-5 hierarchical structure on catalytic cracking: Intra-vs inter-crystalline mesoporosity”. Inorganic Chemistry Communications 149, 110447. (2023).

94. I. Khatrin, R.H. Kusuma, G.T.M. Kadja, Y.K. Krisnandi. “Significance of ZSM-5 hierarchical structure on catalytic cracking: Intra-vs inter-crystalline mesoporosity”. Inorganic Chemistry Communications 149, 110447. (2023).

93. W. Rahmah, T.H. Novita, I.G. Wenten, G.T.M. Kadja. “Perspective and Outlook into Green and Effective Approaches for Zeolitic Membrane Preparation”. Materials Today Sustainability, 22, 100345. (2023).

93. W. Rahmah, T.H. Novita, I.G. Wenten, G.T.M. Kadja. “Perspective and Outlook into Green and Effective Approaches for Zeolitic Membrane Preparation”. Materials Today Sustainability, 22, 100345. (2023).

93. W. Rahmah, T.H. Novita, I.G. Wenten, G.T.M. Kadja. “Perspective and Outlook into Green and Effective Approaches for Zeolitic Membrane Preparation”. Materials Today Sustainability, 22, 100345. (2023).

92. G.T.M. Kadja, M.M. Ilmi, N.J. Azhari, A. Febrianti, J.J.M. Siregar, N. Nurdini, U. Pratomo, M. Khalil, Irkham. “MXene-based nanocomposite for electrocatalytic reduction of CO2: Experimental and theoretical results”. FlatChem, 38, 100481. (2023).

92. G.T.M. Kadja, M.M. Ilmi, N.J. Azhari, A. Febrianti, J.J.M. Siregar, N. Nurdini, U. Pratomo, M. Khalil, Irkham. “MXene-based nanocomposite for electrocatalytic reduction of CO2: Experimental and theoretical results”. FlatChem, 38, 100481. (2023).

92. G.T.M. Kadja, M.M. Ilmi, N.J. Azhari, A. Febrianti, J.J.M. Siregar, N. Nurdini, U. Pratomo, M. Khalil, Irkham. “MXene-based nanocomposite for electrocatalytic reduction of CO2: Experimental and theoretical results”. FlatChem, 38, 100481. (2023).

91. A.R. Sanjaya, S. Amanda, T.A. Ivandini, F. Abnisa, G.T.M. Kadja, U. Pratomo, Y. Alias, M. Khalil. “Fabrication of Graphene Oxide-Decorated Mesoporous NiFe2O4 as an Electrocatalyst in the Hydrogen Gas Evolution Reaction”. Designs, 7(1), 26. (2023).

91. A.R. Sanjaya, S. Amanda, T.A. Ivandini, F. Abnisa, G.T.M. Kadja, U. Pratomo, Y. Alias, M. Khalil. “Fabrication of Graphene Oxide-Decorated Mesoporous NiFe2O4 as an Electrocatalyst in the Hydrogen Gas Evolution Reaction”. Designs, 7(1), 26. (2023).

91. A.R. Sanjaya, S. Amanda, T.A. Ivandini, F. Abnisa, G.T.M. Kadja, U. Pratomo, Y. Alias, M. Khalil. “Fabrication of Graphene Oxide-Decorated Mesoporous NiFe2O4 as an Electrocatalyst in the Hydrogen Gas Evolution Reaction”. Designs, 7(1), 26. (2023).