View Wos Per Prodi
Showing 41-60 of 82 items.
View Wos Per Prodi
# | Kodeprogramstudi | Namaprogramstudi | Namajenjang | Tahun | Nama Jurnal | Judul |
---|---|---|---|---|---|---|
41 | 47201 | Kimia | S1 | 2017 | MATERIAL CHEMISTRY DEVELOPMENT FOR FUTURE MEDICINE, INDUSTRY, ENVIRONMENTAL AND BIOMATERIAL APPLICATION | Non-invasive Self-Care Anemia Detection during Pregnancy Using a Smartphone Camera |
42 | 47201 | Kimia | S1 | JAN 2020 | FUNCTIONAL MATERIALS LETTERS | One-step hydrothermal synthesis and thermochromic properties of chlorine-doped VO2(M) for smart window application |
43 | 47201 | Kimia | S1 | NOV 2 2007 | JOURNAL OF CHROMATOGRAPHY A | On-line preconcentration and chiral separation of propiconazole by cyclodextrin-modified micellar electrokinetic chromatography |
44 | 47201 | Kimia | S1 | OCT-DEC 2014 | MALAYSIAN JOURNAL OF FUNDAMENTAL AND APPLIED SCIENCES | Optimum Conditions For The Synthesis of High Solubility Carboxymethyl Chitosan |
45 | 47201 | Kimia | S1 | JAN-MAR 2018 | MALAYSIAN JOURNAL OF FUNDAMENTAL AND APPLIED SCIENCES | Partial purification and characterization of urease from black-eyed pea (Vigna unguiculata ssp unguiculata L.) |
46 | 47201 | Kimia | S1 | 2019 | 1ST INTERNATIONAL CONFERENCE ON MATERIAL SCIENCE AND ENGINEERING FOR SUSTAINABLE RURAL DEVELOPMENT | Quantitative Relationship Analysis Of Anionic Surfactan Structures Of Sulfate Group Based On Large Ab Initio Calculations |
47 | 47201 | Kimia | S1 | SEP 2008 | CHROMATOGRAPHIA | Rapid estimation of octanol-water partition coefficient for triazole fungicides by MEKC with sodium deoxycholate as surfactant |
48 | 47201 | Kimia | S1 | 2010 | ANGEWANDTE CHEMIE-INTERNATIONAL EDITION | Reduction of a Chelating Bis(NHC) Palladium(II) Complex to [{mu-bis(NHC)}(2)Pd2H](+): A Terminal Hydride in a Binuclear Palladium(I) Species Formed under Catalytically Relevant Conditions |
49 | 47201 | Kimia | S1 | 2016 | 10TH JOINT CONFERENCE ON CHEMISTRY | Screening of Marine Actinomycetes from Segara Anakan for Natural Pigment and Hydrolytic Activities |
50 | 47201 | Kimia | S1 | JUN 2013 | CHIRALITY | Separation of Selected Imidazole Enantiomers Using Dual Cyclodextrin System in Micellar Electrokinetic Chromatography |
51 | 47201 | Kimia | S1 | 2016 | 2016 CONFERENCE ON FUNDAMENTAL AND APPLIED SCIENCE FOR ADVANCED TECHNOLOGY (CONFAST 2016) | Simple Colorimetric Glucose Biosensor using Chitosan Cryogel Supporting Material |
52 | 47201 | Kimia | S1 | JUN 2009 | ELECTROPHORESIS | Simultaneous enantioseparation of cyproconazole, bromuconazole, and diniconazole enantiomers by CD-modified MEKC |
53 | 47201 | Kimia | S1 | JAN-MAR 2013 | MALAYSIAN JOURNAL OF FUNDAMENTAL AND APPLIED SCIENCES | Solid Phase Micro Tip Extraction Coupled With High Performance Liquid Chromatography for Diclofenac Sodium Analysis in Urine Sample |
54 | 47201 | Kimia | S1 | 2010 | JOURNAL OF NANOMATERIALS | Solvothermal Synthesis and Photocatalytic Properties of Nitrogen-Doped SrTiO3 Nanoparticles |
55 | 47201 | Kimia | S1 | SEP 6 2010 | APPLIED PHYSICS LETTERS | Solvothermal synthesis of designed nonstoichiometric strontium titanate for efficient visible-light photocatalysis |
56 | 47201 | Kimia | S1 | 2008 | IUMRS-ICA 2008 SYMPOSIUM AA. RARE-EARTH RELATED MATERIAL PROCESSING AND FUNCTIONS | Solvothermal Synthesis of SrTiO3-LnTiO(2)N Solid Solution and Their Visible Light Responsive Photocatalytic Properties |
57 | 47201 | Kimia | S1 | FEB 2010 | CHROMATOGRAPHIA | Stacking and Sweeping in Cyclodextrin-Modified MEKC for Chiral Separation of Hexaconazole, Penconazole and Myclobutanil |
58 | 47201 | Kimia | S1 | JUN 15 2018 | NANOTECHNOLOGY | Supercritical temperature synthesis of fluorine-doped VO2(M) nanoparticle with improved thermochromic property |
59 | 47201 | Kimia | S1 | FEB 2022 | SURFACES AND INTERFACES | Surface modification of Ag3PO4 using the alginate for highly active photocatalyst under visible light irradiation |
60 | 47201 | Kimia | S1 | 2016 | 3RD INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS SCIENCE AND TECHNOLOGY (ICAMST 2015) | Synthesis and Visible light Photocatalytic Properties of Iron Oxide-Silver Orthophosphate Composites |