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Hasil Pencarian

Ditemukan 4224 dokumen yang sesuai dengan query
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"This book focuses on civil engineering materials and nanotechnology. Highlighting recent advances in the field of nano-engineered cementitious composites, it discusses their key principles, design and fabrication, testing and characterization, performance and mechanisms, as well as applications. Future developments and remaining challenges are also outlined. "
Singapore: Springer Nature, 2019
e20509290
eBooks  Universitas Indonesia Library
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Hardie, Glenn M.
Englewood Cliffs, NJ: Prentice-Hall, 1995
690 HAR b
Buku Teks  Universitas Indonesia Library
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Smith, Ronald C.
New Jersey : Prentice-Hall, 1993
690 SMI p
Buku Teks  Universitas Indonesia Library
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Andres, Cameron K.
New Jersey: Pearson, 2004
690 AND p
Buku Teks  Universitas Indonesia Library
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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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Nurul Tri Alona Sari
"ABSTRAK
Litium titanat (Li4Ti5O12) merupakan anoda yang menjanjikan untuk menghasilkan baterai Lithium Ion dengan kapasitas daya yang tinggi. Selain itu, Silikon memiliki kapasitas secara teori sebesar 3590 mAh g-1 untuk fasa Li15Si4 di temperatur ruang. Akan tetapi memiliki kekurangan dalam ekspansi volume yang besar selama cycling dan memperpendek siklus hidup baterai, ketidakstabilan layer SEI karena perubahan material Si, dan konduktivitas elektrik yang rendah. Akan tetapi nano partikel dari Si memiliki kapasitas spesifik yang lebih tinggi dan kapasitas penyimpanan yang lebih baik apabila dibandingkan dengan partikel Si yang memiliki ukuran mikro. Sehingga dilakukan penelitian Li4Ti5O12 dan nano silikon memiliki sinergi yang baik dalam dalam kapasitas sebagai komposit. Penelitian ini dilakukan proses sintesis dengan menggunakan metode solid state. Pengaruh solid state-ball mill pada karakterisasi serbuk Li4T5O12 yang dihasilkan memiliki ukuran rata-rata partikel 225,95 nm dan tingkat kristalinitas 67%. Pada proses fabrikasi baterai dilakukan dengan penambahan material aktif nano silikon dengan variasi masa 5%, 10% dan 15%. Tujuan penambahan material aktif agar mampu meningkatkan kapasitas dari baterai. Kapasitas yang dimiliki oleh LTO-nSi5 sebesar 191,58 mAh/g, LTO-nSi10 197,5 mAh/g, LTO-nSi15 sebesar 195,6 mAh/g. LTO-nSi10 memiliki nilai konduktivitas yang paling besar dibandingkan LTO-nSi5 dan LTO-nSi15. Sampel LTO-nSi15 menunjukkan nilai resistivitas yang paling besar, menunjukkan bahwa nilai konduktivitas yang didapatkan semakin rendah disetiap penambahan kadar silikon nano.

ABSTRAK
Lithium titanate (Li4Ti5O12) is a promising anode to produce Lithium Ion battery with high power. In addition, silicon has a theoretical capacity of 3590 mAh g-1 to phase Li15Si4 at room temperature. But lacked by the large volume expansion during cycling and shorten the cycle life of the battery, SEI layer instability due to a material change Si, and low electrical conductivity. However nano particles of Si has higher specific capacity and storage capacity are better when compared with Si particles that has a micro sizes. In this research Li4Ti5O12 and nano silicon has a good synergy in the capacity of battery as a composite. This research was synthesized by using solid state methods. Effect of solid-state route and ball mill at Li4T5O12 powder produced has an average particle size of 225.95 nm and the degree of crystallinity of 67%. In the battery fabrication process is done by adding the active material to the silicon nano variation of 5%, 10% and 15% in wt. The additions of active material in order to raise the capacity of the battery. Capacity owned by LTO-nSi5 of 191.58 mAh / g, LTO-nSi10 197.5 mAh / g, and LTO-nSi15 195.6 mAh / g. LTO-nSi10 has the greatest conductivity values ​​compared LTO-nSi5 and LTO-nSi15. LTO-nSi15 samples showed the greatest resistivity values, indicating that the conductivity values ​​obtained at each addition of the lower grade of silicon nano."
2016
S63161
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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Ramsden, Jeremy J.
"Applied nanotechnology takes an integrated approach to the scientific, commercial and social aspects of nanotechnology, exploring :
- The relationship between nanotechnology and innovation
- The changing economics and business models required to commercialize innovations in nanotechnology
- Product design case studies
- Applications in various sectors, including information technology, composite materials, energy, and agriculture
- The role of government in promoting nanotechnology
- The potential future of molecular self-assembly in industrial production
In this 2e, new chapters have been added on energy applications and the role of nanotechnology in sustainability. The section on the safety of nanoproducts has also been updated, and material on funding and commercialization has been updated and expanded, with new case studies illustrating the experience of new startups in a challenging economic environment.
"
Waltham, MA: Elsevier, 2014
e20426798
eBooks  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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