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Ditemukan 2348 dokumen yang sesuai dengan query
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Boca Raton: CRC Press, 2012
620.56 GRA
Buku Teks SO  Universitas Indonesia Library
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Chichester: United Kingdom Wiley, 2017
662.9 GRA
Buku Teks SO  Universitas Indonesia Library
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Zhao, Jijun
Heidelberg: Springer, 2015
662.92 ZHA g
Buku Teks SO  Universitas Indonesia Library
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Ray, Sekhar Chandra
Amsterdam: Elsevier, 2015
546.681 RAY a
Buku Teks SO  Universitas Indonesia Library
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Liu, Zhaoping
Boca Raton: CRC Press, Taylor &​ Francis Group, 2015
621.31 LIU g
Buku Teks SO  Universitas Indonesia Library
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"This book focuses on a group of new materials labeled "graphene oxides." It provides a comprehensive overview of graphene oxide-based nanomaterials in terms of their synthesis, structures, properties, and extensive applications in catalysis, separation, filtration, energy storage, and conversion. The book also covers emerging research on graphite oxides and the impact of the research on fundamental and applied sciences. "
Cham: Springer, 2015
662.92 GRA
Buku Teks SO  Universitas Indonesia Library
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Luca Ottaviano, editor
"The technological exploitation of graphene can be considered to be based on four fundamental interconnected wide topics, growth and synthesis methods, nano-structuring and tailoring of graphene properties, structural and physical characterization, and device design and applications. This proceedings book presents the results highlighted at GraphITA 2011, a multidisciplinary and intersectorial European workshop on synthesis, characterization and technological exploitation of graphene. The workshop realised on 15-18 May at Gran Sasso National Laboratories (Assegi-L'Aquila, Italy) has brought together scientists and engineers working on different technological uses of graphene in a multidisciplinary and multisectorial (academia/industry) environment."
Berlin: Springer, 2012
e20405873
eBooks  Universitas Indonesia Library
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Ng, Leonard W. T.
"This book discusses the functional ink systems of graphene and related two-dimensional (2D) layered materials in the context of their formulation and potential for various applications, including in electronics, optoelectronics, energy, sensing, and composites using conventional graphics and 3D printing technologies. The authors explore the economic landscape of 2D materials and introduce readers to fundamental properties and production technologies. They also discuss major graphics printing technologies and conventional commercial printing processes that can be used for printing 2D material inks, as well as their specific strengths and weaknesses as manufacturing platforms.
Special attention is also paid to scalable production methods for ink formulation, making this an ideal book for students and researchers in academia or industry, who work with functional graphene and other 2D material ink systems and their applications.
- Explains the state-of-the-art 2D material production technologies that can be manufactured at the industrial scale for functional ink formulation;
- Provides starting formulation examples of 2D material, functional inks for specific printing methods and their characterization techniques;
- Reviews existing demonstrations of applications related to printed 2D materials and provides possible future development directions while highlighting current knowledge gaps;
- Gives a snapshot and forecast of the commercial market for printed GRMs based on the current state of technologies and existing patents."
Switzerland: Springer Cham, 2019
e20501968
eBooks  Universitas Indonesia Library
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Nurhayati Indah Ciptasari
"Dalam beberapa tahun terakhir, peningkatan pesat teknologi telah mendorong pengembangan berbagai jenis material di bidang ilmu pengetahuan dan penelitian. Salah satu material yang paling populer untuk penelitian adalah reduced Graphene Oxide (rGO). Material dibuat dari Graphene Oxide (GO) dengan melakukan berbagai metode pengolahan kimia dan termal untuk mengurangi kandungan oksigen di dalamnya. Sifat-sifat luar biasa dari rGO seperti sifat termal, mekanik, dan elektronik menjadikannya sebagai kandidat bahan yang potensial digunakan dalam berbagai aplikasi dengan penambahan matriks untuk memperluas penggunaannya. Penelitian ini bertujuan untuk mengembangkan kemungkinan material nanokomposit reduced Graphene Oxide (rGO) untuk aplikasi fotokatalitik yang lebih ramah lingkungan serta pengembangan material nanokomposit reduced Graphene Oxide (rGO) untuk aplikasi superkapasitor. Penelitian dilakukan dengan beberapa tahapan. Pertama dengan membuat bahan baku reduced graphene oxide dari grafit dengan menggunakan metode Hummers modifikasi. Kemudian mensintesis rGO dengan AgNPs (Perak Nanopartikel) menggunakan metode hidrotermal in-situ dengan reduktor NaBH4. Setelah itu, dilakukan pengujian aktivitas fotokatalitiknya terhadap ion Pb untuk mengetahui kinerja efektivitas rGO/AgNPs fotokatalitik dan potensinya sebagai bahan fotokatalitik alternatif dalam pengolahan limbah. Selanjutnya sintesis nanokomposit rGO dengan ZrO2 (Zirkonia) dilakukan dengan metode hidrotermal in-situ menggunakan reduktor NaBH4. Kemudian dilakukan karakterisasi sifat fisik dan kimianya agar dapat diaplikasikan pada superkapasitor. Analisis dilakukan dengan menggunakan X-Ray Diffraction (XRD), Scanning Electron Microscope (SEM), Spektroskopi Raman, Spektrofotometer UV-Vis, Fourier Transform Infra Red (FTIR), dan Electrochemical Impedance Spectroscopy (EIS). Hasil penelitian ini Sintesis nanokomposit rGO/AgNPs menggunakan metode hidrotermal in-situ dengan reduktor NaBH4 untuk menguji aktivitas fotokatalitiknya terhadap ion Pb berhasil dilakukan. Performa fotokatalitik dengan uji terhadap ion Pb didapatkan persentase maksimum sebesar 44% pada 1,5 jam iradiasi. Nanokomposit rGO/ZrO2 berhasil disintesis dengan metode hidrotermal in-situ menggunakan reduktor NaBH4. Nilai spesifik kapasitansi tertinggi sebesar 482 F/g diperoleh pada rGO-ZrO2 = 1:2 dengan menggunakan PANI dalam larutan elektrolit H2SO4 karena pada kondisi ini menghasilkan nilai resistansi yang rendah sebesar 238,53 ohm.  

In recent years, rapid advancements in technology have driven the development of various types of materials in the field of science and research. One of the most popular materials for research is reduced Graphene Oxide (rGO). This material is made from Graphene Oxide (GO) through various chemical and thermal processing methods to reduce its oxygen content. The outstanding properties of rGO, such as thermal, mechanical, and electronic properties, make it a potential candidate for use in various applications with matrix additives to expand its usage. This research aims to explore the potential of reduced Graphene Oxide (rGO) nanocomposite materials for environmentally friendly photocatalytic applications and the development of rGO nanocomposite materials for supercapacitor applications. The research is conducted in several stages. Firstly, raw materials of reduced graphene oxide are produced from graphite using a modified Hummers method. Then, rGO is synthesized with AgNPs (Silver Nanoparticles) using an in-situ hydrothermal method with NaBH4 as the reducing agent. Subsequently, the photocatalytic activity of the rGO/AgNPs composite is tested against Pb ions to evaluate its effectiveness and potential as an alternative photocatalytic material in wastewater treatment. Furthermore, the synthesis of rGO nanocomposites with ZrO2 (zirconium dioxide) is carried out using an in-situ hydrothermal method with NaBH4 as the reducing agent. The physical and chemical properties of the nanocomposites are characterized for their application in supercapacitors. Analysis is performed using X-Ray Diffraction (XRD), Scanning Electron Microscope (SEM), Raman Spectroscopy, UV-Vis Spectrophotometry, Fourier Transform Infrared (FTIR) Spectroscopy, and Electrochemical Impedance Spectroscopy (EIS). The results of this research show the successful synthesis of rGO/AgNPs nanocomposites using an in-situ hydrothermal method with NaBH4 as the reducing agent to test their photocatalytic activity against Pb ions. The photocatalytic performance, tested against Pb ions, achieved a maximum percentage of 44% after 1.5 hours of irradiation. Additionally, the rGO/ZrO2 nanocomposites were successfully synthesized using the in-situ hydrothermal method with NaBH4 as the reducing agent. The highest specific capacitance value of 482 F/g was obtained at rGO-ZrO2 = 1:2 ratio, using PANI in the H2SO4 electrolyte solution, as this condition resulted in a low resistance value of 238.53 ohms."
Depok: Fakultas Teknik Universitas Indonesia, 2023
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UI - Disertasi Membership  Universitas Indonesia Library
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"The optical properties of carbon nanotubes and graphene make them potentially suitable for a variety of photonic applications. Carbon nanotubes and graphene for photonic applications explores the properties of these exciting materials and their use across a variety of applications.
Part one introduces the fundamental optical properties of carbon nanotubes and graphene before exploring how carbon nanotubes and graphene are synthesised. A further chapter focusses on nonlinearity enhancement and novel preparation approaches for carbon nanotube and graphene photonic devices. Chapters in part two discuss carbon nanotubes and graphene for laser applications and highlight optical gain and lasing in carbon nanotubes, carbon nanotube and graphene-based fiber lasers, carbon-nanotube-based bulk solid-state lasers, electromagnetic nonlinearities in graphene, and carbon nanotube-based nonlinear photonic devices. Finally, part three focusses on carbon-based optoelectronics and includes chapters on carbon nanotube solar cells, a carbon nanotube-based optical platform for biomolecular detection, hybrid carbon nanotube-liquid crystal nanophotonic devices, and quantum light sources based on individual carbon nanotubes.
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Cambridge, UK: Woodhead, 2013
e20426948
eBooks  Universitas Indonesia Library
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