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Harsono
"Titania nanotube dengan dopan karbon (C-TiNT) telah berhasil disentesis dan diuji untuk degradasi fenol. Sintesis dilakukan dengan dua tahap yaitu pembentukan titania nanotube dengan metode hydrothermal dan pemberian dopan karbon pada fotokatalis TiO2 nanotube. Pemberian dopan karbon dilakukan dengan dua metode post treatment yaitu kalsinasi dan hydrothermal. Selain itu, juga dilakukan variasi jenis sumber dopan karbon yaitu glukosa dan 1-propanol. Karakterisasi dilakukan dengan menggunakan analisis SEM-EDS, XRD, dan DRS.
Hasil SEM menunjukkan hasil morfologi nanotube telah terbentuk dan terdapat dopan karbon didalamnya. Analisis XRD menunjukkan pada semua katalis terbentuk kristal anatase 100% dengan ukuran kristal 7 - 10 nm. Karakterisasi DRS menunjukkan bahwa katalis nanotube dengan dopan karbon memberikan respon yang baik pada panjang gelombang cahaya tampak dengan nilai band gap 3,0 eV hingga 3,20 eV. Hasil pengujian terhadap fenol menunjukkan katalis C-TiNT mampu mendegradasi fenol dengan kinerja 60% hingga 80%. Nilai ini jauh lebih baik dibandingkan dengan TiO2 nanopartikel yang hanya mampu mendegradasi fenol dengan kinerja sebesar 33%.

A variety of carbon doped on titania nanotube (C-TiNT) have already syntesied well as investigeted for phenol degradation. Synthesis has been conducted in two steps. First step was synthesis of titania nanotube by using hydrothermal method. Second step was incorporated carbon doped to the photocatalyst TiO2 nanotube. Carbon doped was also given by using two methods of post treatment. They are calcination and hydrothermal methods. In addition, we also examined two carbon sources of dopan. They are glucose and 1-Propanol. The prepared samples were characterized with SEM-EDS, XRD, and DRS.
The SEM result showed that nanotube morphology was already exist and contained with carbon. XRD analysis showed existence of anatase crystalline phase reached 100%, and size of crystal was around 7-10nm. DRS result showed good response to visible light range (λ > 400nm) which has band gap value at 3,0 eV-3,20 eV. The results of phenol degradation showed those photocatalyst have performance in range 60% - 80%.This result is much better compared to TiO2 nanoparticle which only degradated 33% of phenol.
"
Depok: Fakultas Teknik Universitas Indonesia, 2013
S44409
UI - Skripsi Membership  Universitas Indonesia Library
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Ghiska Ramahdita
"ABSTRAK
Berbagai penelitian mengenai teknologi nano terus difokuskan pada nanopartikel semikonduktor seng oksida (ZnO) dengan berbagai potensi strategis yang dimilikinya. Dalam penelitian ini telah dilakukan sintesis nanopartikel ZnO dengan teknik presipitasi yang dikombinasikan dengan perlakuan pra-hidrotermal dengan variasi waktu tahan 0, 24, 48 dan 72 jam yang secara khusus ditujukan untuk menginvestigasi pengaruh perlakuan tersebut terhadap ukuran nanopartikel, kristalinitas dan energi celah pita nanopartikel yang dihasilkan. Hasil penelitian menunjukkan bahwa meningkatnya waktu perlakuan pra-hidrotermal dari 0 hingga 72 jam mampu meningkatkan ukuran nanopartikel ZnO dari 3.47 menjadi 13.85 nm, serta menurunkan energi celah pita dari 3.099 menjadi 3.076 eV.

ABSTRACT
Many research on nanotechnology has been focused on zinc oxide (ZnO) semiconductor nanoparticles which has strategic potentials. In the current research the synthesis of ZnO nanoparticles has been performed, using a precipitation technique assisted by a pre-hydrothermal treatment with various holding time of 0, 24, 48 and72 hours. This route was specifically aimed at investigating the effect of this treatment on the nanocrystallite size, crystallinity and band gap energy of the resulting nanoparticles. The result of investigation showed that an increasing of pre-hydrothermal treatment duration from 0 to 72 hours has increased the crystallite size of ZnO nanoparticles from 3.47 to 13.85 nm, and decreased the band gap energy from 3.099 to 3.076 eV."
Depok: Fakultas Teknik Universitas Indonesia, 2011
S691
UI - Skripsi Open  Universitas Indonesia Library
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"This book presents the fabrication of optoelectronic nanodevices. The structures considered are nanowires, nanorods, hybrid semiconductor nanostructures, wide bandgap nanostructures for visible light emitters and graphene. The device applications of these structures are broadly explained. The book deals also with the characterization of semiconductor nanostructures. "
Berlin: Springer, 2012
e20406047
eBooks  Universitas Indonesia Library
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Davin Philo
"TiO2 nanotube (TNT) telah disintesis dengan metode hydrothermal pada suhu 130 °C, dengan kecepatan pengadukan sebesar 600 rpm, selama 6 jam menggunakan bahan dasar TiO2 P25. Sampel TNT dikarakterisasi dengan SEM/EDX, XRD, UV-Vis DRS, dan BET. Hasil komposit TNT-Batu apung diuji kinerjanya dalam aplikasi degradasi limbah fenol. Uji kinerja dilakukan pada limbah sintetis fenol dengan konsentrasi 10 ppm (300 mL).
Hasil karakterisasi menunjukkan bahwa fotokatalis TNT berhasil disintesis, dimana sampel TNT mempunyai struktur kristal anatase dengan ukuran kristal sebesar 11 nm, band gap (Eg) sebesar 3,2 eV, dan luas permukaan aktif sekitar 101 m2/g. Berdasarkan uji kinerja, disimpulkan bahwa loading TNT optimal pada komposit TNT-Batu apung adalah 2,5 % dengan tingkat degradasi limbah fenol hingga 54 % pada menit ke-150.

TiO2 nanotube (TNT) were synthezised by hydrothermal method at temperature 130 °C, with stirring speed of 600 rpm, for 6 hours, using TiO2 P25 as raw materials. TNT samples were characterized by SEM/EDX, XRD, UV-Vis DRS, and BET. The composites TNT-Pumices were tested in the application of phenol waste degradation. The performance tests were held by using the phenol waste synthetic (10 ppm, 300 mL).
The characterizations showed that TNT photocatalysts were successfully synthesized, where TNT samples had the anathase crystall structure with size of 11 nm, band gap (Eg) of 3,2 eV, and surface area of 100,661 m2/g. Based on the performance test, we could concluded that the optimum loading of TNT is 2,5 %, which could degrade the phenol to 54 % at the minute of 150.
"
Depok: Fakultas Teknik Universitas Indonesia, 2013
S46382
UI - Skripsi Membership  Universitas Indonesia Library
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Ardiansyah Taufik
"Nanopartikel hybrid oksida besi/oksida tembaga/oksida seng telah disintesis dengan menggunakan metode sol-gel untuk tiga variasi molar. Seluruh sampel dikarakterisasi dengan spektroskopi X-Ray Diffraction, Field Emission Scanning Electron Microscopy, Vibrating Sample Magnetometer, Energy Dispersive X-Ray, Ultraviolet-visible Reflectance dan Fourier-Transform Infrared. Nanopartikel hybrid yang dihasilkan menunjukkan karakteristik feromagnetik dengan morfologi yang merupakan gabungan spherical-like dari oksida besi dan oksida seng dan clews-like dari oksida tembaga. Keempat unsur penyusunan nanopartikel hybrid hadir dalam bentuk ikatan Zn-O, Fe-O dan Cu-O dengan kehadiran fase dan struktur tunggal dari inverse cubic spinel magnetite, hexagonal wurtzite oksida seng dan monoclinic oksida tembaga. Celah energi nanopartikel hybrid cenderung turun dengan berkurangnya rasio molar oksida seng yang berhubungan dengan peningkatan kuantitas oksida besi dan oksida tembaga. Kondisi optimum aktivitas fotokatalitik nanopartikel hybrid dalam mendegradasi methylene blue dengan pemaparan cahaya ultraviolet diperoleh pada kondisi basa untuk pH 13. Nanopartikel hybrid dengan rasio molar 1:1:5 mampu menghasilkan degradasi maksimum dengan laju degradasi yang lebih tinggi dibandingkan nanopartikel oksida seng. Hole ditemukan sebagai spesies yang berperan aktif dalam aktivitas fotokatalitik nanopartikel hybrid dalam mendegradasi methylene blue.
Iron oxide/cuprix oxide/zinc oxide hybrid nanoparticles with three variation of molar ratio have been synthesized using sol-gel methods. All samples were characterized by X-Ray Diffraction, Field Emission Scanning Electron Microscopy, Vibrating Sample Magnetometer, Energy Dispersive X-Ray, Ultraviolet-visible Reflectance and Fourier-Transform Infrared Spectroscopies. The resulting hybrid nanoparticles show ferromagnetic behaviour and have combination of spherical-like of iron oxide and zinc oxide morphologies with clews-like of cuprix oxide morphology. The four elements of the hybrid nanoparticles present in the form of Zn-O, Fe-O and Cu-O bonds and form individual crystal structures and phases of cubic inverse spinel of iron oxide, hexagonal wurtziteof zinc oxide and monoclinic of cuprix oxide. Energy gap of the hybrid nanoparticles tend to shift to lower energy that associates with increasing quantity of iron oxide and cuprix oxide with decreasing zinc oxide molar ratio. Optimum condition for photocatalytic activity of the hybrid nanoparticles in degrading methylene blue under ultraviolet light irradiation is obtained under alkaline conditions for pH 13. Hybrid nanoparticles with a molar ratio of 1:1:5 is able to produce the maximum degradation with higher degradation rate than zinc oxide nanoparticles. Hole found as species that plays an active role in photocatalytic activity of the hybrid nanoparticles to degrade methylene blue."
Depok: Universitas Indonesia, 2014
S57851
UI - Skripsi Membership  Universitas Indonesia Library
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Selvianna Darel
"Tanaman sambiloto (Andrographis paniculate) adalah salah satu tanaman yang umum digunakan pada obat tradisional di Indonesia. Pada tanaman sambiloto, terdapat senyawa aktif yakni andorgrafolid. Senyawa andrografolid memiliki banyak aktivitas farmakologi termasuk aktivitas antivirus terhadap virus SARS-CoV-2. Namun, andrografolid memiliki kelemahan yakni rasanya yang pahit, sukar larut dalam air serta bioavailabilitas yang rendah. Sehingga, andrografolid perlu diformulasikan secara optimum guna dapat mengatasi kelemahan andrografolid. Penelitian ini bertujuan untuk memperoleh formulasi Nanostructured Lipid Carrier dengan kandungan andrografolid dengan karakteristik sesuai sediaan parenteral. Formulasi Nanostructured Lipid Carrier dibuat menggunakan zat aktif andrografolid, minyak kelapa sawit, minyak zaitun, gliserin, aquabidest serta variasi gliseril monostearat yakni 2%, 3%, 4%. NLC dibuat menggunakan alat homogenizer selanjutnya dilakukan pengurangan ukuran globul dengan ultrasonikasi amplitude 60% selama 12 menit. NLC diuji karakteristiknya meliputi ukuran globul, potensial zeta, indeks polidispersitas, viskositas, tegangan permukaan, morfologi globul, efisiensi penjerapan serta penetapan kadar. Pada penelitian ini memperlihatkan bahwa formula optimum yakni NLC dengan gliseril monostearate 2%. NLC yang diperoleh memenuhi kriteria sediaan rute parenteral yakni ukuran globul, indeks polidispersitas, zeta potensial, serta efisiensi penjerapan berturut-turut yakni 438,33 ± 90,71; 0,237 ± 0,01; -37,1 ± 0,34; 82,8890 ± 0,10% dan memiliki ukuran globul yakni sferis namun NLC masih belum memenuhi syarat sterilitas. Berdasarkan uji stabilitas yang dilakukan, NLC memiliki kestabilan fisik termasuk uji cucling, uji sentrifugasi, serta uji pada tiga kondisi suhu berbeda. Hasil penelitian yakni formula optimum NLC dengan GMS 2% memiliki kestabilan fisik baik hingga minggu ke-12.

Sambiloto (Andrographis paniculata) is one of the plants used as traditional medicine in Indonesia. The active substance in Sambiloto, namely andrographolide, has many pharmacological activities. One of them is pharmacological activity against the SARS-CoV-2 virus. However, andrographolide has its limitation such as low solubility in water, low bioavailability, and bitter taste. Therefore, andrographolide needs to formulated optimally to overcome these limitation. This study aims to obtain formulation of nanostructured lipid carrier andrographolide with suitable characteristics for parenteral administration. The NLC formulation consisted of andrographolide, palm oil, olive oil, glycerin, and double-distilled water with variances of glyceryl monostearate 2%, 3%, 4%. The manufactured of NLC using a homogenizer was continued with 60% amplitude ultrasonication for 12 minutes. The test of NLC characteristics included globule size, polydispersity index, assay, viscosity, surface tension, globule morphology, encapsulation efficiency, and sterility test. The study showed that, the optimum formula NLC with 2% glyceryl monostearate. NLC met the criteria for the parenteral route of administration which is globul size, polydispersity index, zeta potensial and encapsulation efficiency, respectively, 438.33±90.71; 0.237±0.01; -37.1 ± 0.34; 82.889±0.10%, and spherical shaped globule but did not meet the requirements for sterility. In addition, the physical stability of NLC was also carried out including centrifugation test, cycling test, test at three different temperatures. This study showed that formula optimum NLC with GMS 2% also the results of the physical test showed that NLC had good physical stability until 12th week."
Depok: Fakultas Farmasi Universitas Indonesia, 2022
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Hery Haerudin
"ABSTRAK
A natural-based nanocomposite film consisting of chitosan, montmorillonite (MMT) and cashew nut shell liquid (CNSL) was synthesized. The nanocomposite was prepared by mixing a suspension of clay particles (filler, MMT) with a solution containing chitosan as the macroscopic polymer matrix. In this study, it was proposed that non-ionic long-chain alkyl
molecules with possible interact ions with the amine group of chitosan could be used as a plasticizer. As a natu-ral source for these compounds, an extract of CNSL was used. A series of chitosan/MMT com-posite samples containing two different clay contents and a sample with an additional CNSL were prepared. FTIR spectroscopy of the nanocomposite films indicated that, by addition of CNSL, amide groups of the chitosan are probably less attached and have more space for vibration. CNSL seems to provide in
termolecular spaces between the chitosan molecules. Atomic force microscopy (AFM) analysis showed that the composite contained
particles measuring 100 nm or less, which confirmed that the nanocomposite had been successfully produced by this method. Addition of CNSL as plasticizer improved the tensile strength by 10% and the elastic modulus by almost 18%. Cell growth was observed on all the nanocomposite samples studied."
[Fakultas Teknik UI;Lembaga Ilmu Pengetahuan Indonesia (LIPI);Lembaga Ilmu Pengetahuan Indonesia (LIPI), Lembaga Ilmu Pengetahuan Indonesia (LIPI)], 2010
J-pdf
Artikel Jurnal  Universitas Indonesia Library
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Akhmad Herman Yuwono
"Sebuah penelitian sistematis telah dilakukan untuk mengetahui penyebab utama rendahnya tingkat kristalinitas nanopartikel titania (TiO2) di dalam nanokomposit TiO2−PMMA hasil proses sol−gel. Dari hasil investigasi diketahui bahwa fasa TiO2 amorfus di dalam nanokomposit disebabkan oleh pembentukan cepat dari jaringan kaku Ti-OH selama tahapan hidrólisis dan kondensasi, yang diperburuk dengan efek perangkap dari matrik PMMA. Sebuah metode kombinasi pra-anil dan pasca-hidrotermal berhasil meningkatkan tingkat kristalinitas fasa TiO2 secara signifikan , dengan tetap mempertahankan integritas matrik polimer di dalam nanokomposit. Analisis evolusi nano struktural TiO2 dalam nanokomposit dilakukan dengan pengujian XRD, spektroskopi FTIR dan TEM. Peningkatan kristalinitas nanopartikel TiO2 meningkatkan sifat-sifat optis linier dan nonlinier lapisan tipis transparan nanokomposit TiO2−PMMA

A systematic investigation has been conducted to understand the mechanisms responsible for the low nanocrystallinity of TiO2 nanoparticles in sol−gel derived TiO2 −PMMA nanocomposites. On the basis of investigation, it is found that the largely amorphous TiO2 state is caused by the fast development of stiff Ti−OH networks during hydrolysis and condensation, worsened by the PMMA entrapment effect. A combined method involving a pre-annealing and a post -hydrothermal treatment has been successfully devised to enhance TiO2 nanocrystallinity, while maintaining the integrity of polymer matrix. The nanostructural evolution of TiO2 in nanocomposites were carried out with x-ray diffraction, Fourier Transfor Infra-Red (FTIR) spectroscopy and High -Resolution Transmission Microscope (HRTEM). The functional properties of the TiO2−PMMA nanohybrids have been correlated to their nanostructures, where both linear and nonlinear optical responses are shown to increase with the enhancement of TiO2 nanocrystallinity."
Depok: Fakultas Teknik Universitas Indonesia, 2009
AJ-Pdf
Artikel Jurnal  Universitas Indonesia Library
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Paramitha Yunizar Sari
"ABSTRAK
Telah dilakukan studi degradasi secara fotokatalitik zat warna metilen biru
menggunakan fotokatalis nanotube bermagnet. Fotokatalis Fe3O4/SiO2/TiO2-
nanotube telah berhasil disintesis melalui proses heteroaglomerasi antara
Fe3O4/SiO2 dengan TiO2-nanotube pada pH 4,8. Fotokatalis TiO2 nanotube (TiO2-
NT) yang digunakan dalam komposit Fe3O4/SiO2/TiO2-nanotube terlebih dahulu
disintesis dengan menggunakan metode rapid breakdown anodization, dalam
elektrolit yang mengandung ion klorat, pada tegangan 15 volt selama 35 menit
dan suhu kalsinasi 450 0C selama 2 jam dengan kenaikan suhu 50 per menit. TiO2
nanotube dikompositkan dengan bahan magnetik dan silika menjadi
Fe3O4/SiO2/TiO2-nanotube agar lebih mudah diambil kembali dengan medan
magnet dari luar setelah pemakaiannya serta untuk meningkatkan sifat
adsorpsinya. Komposit dikarakterisasi dengan menggunakan FTIR, SEM-EDX,
XRD, UV Vis DRS, BET dan VSM. Uji kinerja fotodegradasi metilen biru
dilakukan pada suatu sistem reaktor fotokatalitik dengan sistem batch yang
dilengkapi dengan shaker, lampu UV 15 Watt selama 5 jam dan sampel hasil uji
kinerja dianalisis menggunakan spektrofotometer UV-Vis. Uji kinerja
fotodegradasi metilen biru dalam air menunjukan bahwa TiO2 nanotube 450 0C
dapat menurunkan konsentrasi metilen biru sebesar sebesar 96,43% dengan
konsentrasi awal 20 ppm. Fe3O4/SiO2/TiO2-nanotube dapat menurunkan
konsentrasi metilen biru sebesar 90,4%. Kelebihan komposit ini yaitu dapat
dikumpulkan kembali dari cairan limbah dengan bantuan medan magent luar
setelah proses selesai.

ABSTRACT
Study on photocatalytic degradation of methylene blue dye using a
magnetic nanotubes photocatalysts has been conducted. Photocatalyst
Fe3O4/SiO2/TiO2-nanotube has been successfully synthesized with
heteroaglomerasi process between Fe3O4/SiO2 with TiO2 nanotubes at pH 4.8.
Photocatalyst TiO2 nanotubes used in the composite Fe3O4/SiO2/TiO2-nanotube
synthesized by of rapid breakdown anodization method with an electrolyte
containing ions of chlorate, at a voltage of 15 volts for 35 minutes and the
calcination temperature of 450 0C for 2 hours as the temperature rises 5 0C per
minute. TiO2 nanotube with a magnetic material and silica into Fe3O4/SiO2/TiO2-
nanotube to be more easily taken back by the magnetic field from the outside after
use and enhance the adsorption properties. Composite were characterized using
FTIR, SEM-EDX, XRD, UV-Vis DRS, BET and VSM. Photodegradation of
methylene blue test performed on a photocatalytic reactor system with batch
systems equipped with shaker, 15 watt UV lamp for 5 hours and a sample
performance test results analyzed using UV-Vis spectrophotometer. The results of
the photodegradation experiment of methylene blue in water by using TiO2
nanotube 450 0C and Fe3O4/SiO2/TiO2 in the batch reactor with 1 g/L of catalyst
dose showed that of methylene blue can be eliminated as much as 96.43% and
90.4%. Fe3O4/SiO2/TiO2-nanotube can reduced the concentration of methylene
blue smaller than used TiO2 nanotube but the composite Fe3O4/SiO2/TiO2-
nanotube can be still recollected from water with assistance of external magnetic
field."
2016
S64599
UI - Skripsi Membership  Universitas Indonesia Library
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New York: CRC Press, 2008
620.5 FUN
Buku Teks SO  Universitas Indonesia Library
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