Energy and Power Engineering

Energy and Power Engineering

ISSN Print: 1949-243X
ISSN Online: 1947-3818
www.scirp.org/journal/epe
E-mail: epe@scirp.org
"Amphiphilic Poly (3-Hydroxy Alkanoate)s: Potential Candidates for Medical Applications"
written by Baki HAZER,
published by Energy and Power Engineering, Vol.2 No.1, 2010
has been cited by the following article(s):
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[1] Synthesis of fully bio-based poly (3-hydroxybutyrate)-oligo-2-ethyl oxazoline conjugates
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[2] Free Radical Polymerization of Dimethyl Amino Ethyl Methacrylate Initiated by Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) Macroazo Initiator: Thermal and …
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[3] Polyhydroxybutyrate blends: A solution for biodegradable packaging?
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[4] Synthesis and characterization of star-shaped block copolymers composed of poly (3-hydroxy octanoate) and styrene via RAFT polymerization
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[5] Biomedical Application of Polyhydroxybutyrate Biopolymer in Drug Delivery
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[6] Peculiarities of reversible addition-fragmentation chain transfer (RAFT) polymerization in the presence of switchable RAFT agent
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[7] Domination topological properties of polyhydroxybutyrate and polycaprolactone with QSPR analysis
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[8] Bio-plastic Polyhydroxyalkanoate (PHA): Applications in Modern Medicine
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[9] Synthesis of Biobased Block Copolymers Using A Novel Methacrylated Methyl Salicylate and Poly (3‐Hydroxybutyrate)
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[10] Engineering Native and Synthetic Pathways in Pseudomonas putida for the Production of Tailored Polyhydroxyalkanoates
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[11] Amphiphiles from Poly (3-hydroxyalkanoates)
2020
[12] Potential applications of polyhydroxyalkanoates as a biomaterial for the aging population
2020
[13] Novel poly (3-hydroxy butyrate) macro RAFT agent. Synthesis and characterization of thermoresponsive block copolymers.
2020
[14] Topological indices of polyhydroxybutyrate and polycaprolactone
2020
[15] Novel poly (3-hydroxy butyrate) macro RAFT agent. Synthesis and characterization of thermoresponsive block copolymers
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[16] Synthesis and characterization of novel amphiphilic tamarind seed xyloglucan-octenyl succinic anhydride conjugate
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[17] What has been trending in the research of polyhydroxyalkanoates? A systematic review
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[18] Synthesis and characterization of the ABA-type poly (ester-ether-ester) block copolymers
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[19] Biosynthesis of Poly-3-Hydroxybutyrate and its Application in Controlled Drug Delivery
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[20] Autoxidized Oleic Acid Bifunctional Macro Peroxide Initiators for Free Radical and Condensation Polymerization. Synthesis and Characterization of Multiblock …
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[21] Esterase Cleavable 2D Assemblies of Magnetic Iron Oxide Nanocubes: Exploiting Enzymatic Polymer Disassembling to Improve Magnetic Hyperthermia Heat Losses
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[22] Nanoparticle opsonization: forces involved and protection by long chain polymers
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[23] Synthesis of block copolymer including polyepichlorohydrin and polyethylene glycol by “click” chemistry: evaluation of primary parameters of copolymerization
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[24] Synthesis of block/graft copolymers based on vinyl benzyl chloride via reversible addition fragmentation chain transfer (RAFT) polymerization using the carboxylic acid …
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[25] Applications of Polyhydroxyalkanoates Based Nanovehicles as Drug Carriers
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[26] Synthesis and characterization of ring-type and branched polymers including polyethylene glycols by “click” chemistry
2019
[27] Synthesis and characterization of novel ABA type poly (Ester-ether) triblock copolymers
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[28] Methods of synthesis, properties and biomedical applications of polyhydroxyalkanoates: a review
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[29] Biodegradable and biocompatible radiopaque iodinated poly-3-hydroxy butyrate: synthesis, characterization and in vitro/in vivo X-ray visibility
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[30] Department of Microbiology, Centre for PG Studies, Jain University, Bangalore, Karnataka, India
2018
[31] Bioplastic Polyhydroxyalkanoate (PHA): Recent Advances in Modification and Medical Applications
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[32] Solid-Phase Microextraction and Determination of Tin Species in Beverages and Food Samples by Using Poly (ε-Caprolactone-b-4-Vinyl Benzyl-g-Dimethyl Amino …
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[33] Synthesis of novel biodegradable elastomers based on poly [3-hydroxy butyrate] and poly [3-hydroxy octanoate] via transamidation reaction
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[34] Synthesis and characterization of poly (ɛ-caprolactone-co-ethylene glycol) star-type amphiphilic copolymers by “click” chemistry and ring-opening polymerization
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[35] Fabrication and Characterization of an Electrospun PHA/Graphene Silver Nanocomposite Scaffold for Antibacterial Applications
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[36] Evaluation of antibacterial and anticancer properties of poly (3-hydroxybutyrate) functionalized with different amino compounds
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[37] PEG-modified poly (10, 11-dihydroxyundecanoic acid) amphiphilic copolymers. Grafting versus macromonomer copolymerization approaches using CALB
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[38] Synthesis and characterization of amphiphilic triblock copolymers including β-alanine/α-methyl-β-alanine and ethylene glycol by “click” chemistry
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[39] Interface influence of materials and surface modifications
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[40] Synthesis and characterization of poly (-caprolactone-co-ethylene glycol) star-type amphiphilic copolymers by" click" chemistry and ring-opening polymerization
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[41] Preparation and Modification of Medium-Chain-Length Poly (3 Hydroxyalkanoates) as Osteoconductive and Amphiphilic Porous Scaffold
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[42] Mechanism of poly (3-hydroxybutyrate-co-3-hydroxyhexanoate) depolymerization in superheated steam and characterization of the degradation products for …
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[43] Telechelic Polyethers by Living Polymerizations and Precise Macromolecular Engineering
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[44] Handbook of Telechelic Polyesters, Polycarbonates, and Polyethers
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[45] Telechelic Polyhydroxyalkanoates/Polyhydroxybutyrates (PHAs/PHBs)
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[46] Preparation and modification of mediumchain-length poly (3 Hydroxyalkanoates) as osteoconductive and amphiphilic porous scaffold/Nor Faezah Ansari
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[47] Synthesis of PNIPAM–PEG Double Hydrophilic Polymers Using Oleic Acid Macro Peroxide Initiator
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[48] The heterogeneous selective reduction of PHB as a useful method for preparation of oligodiols and surface modification
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[49] Polyhydroxyalkanoate‐based drug delivery systems
Polymer International, 2017
[50] Functionalization of medium-chain-length poly (3-hydroxyalkanoates) as amphiphilic material by graft copolymerization with glycerol 1, 3-diglycerolate diacrylate and …
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[51] Bacterial polyester nanoparticles for drug delivery
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[52] Nanoparticulate fingolimod delivery system based on biodegradable poly (3-hydroxybutyrate-co-3-hydroxyvalerate)(PHBV): design, optimization, characterization and in-vitro evaluation
Pharmaceutical Development and Technology, 2017
[53] Solid phase extraction of lead, cadmium and zinc on biodegradable polyhydroxybutyrate diethanol amine (PHB-DEA) polymer and their determination in water and …
Food Chemistry, 2016
[54] Synthesis of comb-type amphiphilic graft copolymers derived from chlorinated poly (ɛ-caprolactone) via click reaction
Polymer Bulletin, 2016
[55] Opsonisation of nanoparticles prepared from poly(β-hydroxybutyrate) and poly(trimethylene carbonate)-b-poly(malic acid) amphiphilic diblock copolymers: Impact on the in vitro cell uptake by primary human macrophages and HepaRG hepatoma cells
International Journal of Pharmaceutics, 2016
[56] Electrochemical, continuous-flow determination of p-benzoquinone on a gold nanoparticles poly(propylene-co-imidazole) modified gold electrode
Instrumentation Science & Technology, 2016
[57] Opsonisation of nanoparticles prepared from poly(β-hydroxybutyrate) and poly(trimethylene carbonate)-b-poly(malic acid) amphiphilic diblock copolymers: Impact on the in vitro cell uptake by primary human macrophages and HepaRG hepatoma cells
International Journal of Pharmaceutics, 2016
[58] Poly (trimethylene carbonate)/Poly (malic acid) Amphiphilic Diblock Copolymers as Biocompatible Nanoparticles
Chemistry–A European Journal, 2016
[59] Solid phase extraction of lead, cadmium and zinc on biodegradable polyhydroxybutyrate diethanol amine (PHB-DEA) polymer and their determination in water and food samples
Food chemistry, 2016
[60] Electrochemical, Continuous-Flow Determination of p-Benzoquinone on a Gold Nanoparticles Poly (propylene-co-imidazole) Modified Gold Electrode
Instrumentation Science & Technology, 2016
[61] Linear and three-arm star hydroxytelechelic poly(benzyl β-malolactonate)s: a straightforward one-step synthesis through ring-opening polymerization
Polymer Chemistry, 2015
[62] Polyhydroxyalkanoates: Structure, Properties and Sources
Polyhydroxyalkanoate (PHA) based Blends, Composites and Nanocomposites, 2015
[63] Nanoparticulate fingolimod delivery system based on biodegradable poly (3-hydroxybutyrate-co-3-hydroxyvalerate)(PHBV): design, optimization, characterization and in-vitro evaluation
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[64] Biodegradable Polymers: Renewable Nature, Life Cycle, and Applications
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[65] Poly-ε-caprolactone Coated and Functionalized Porous Titanium and Magnesium Implants for Enhancing Angiogenesis in Critically Sized Bone Defects
International journal of molecular sciences, 2015
[66] A novel poly (propylene-< i> co-imidazole) based biofuel cell: System optimization and operation for energy generation
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[67] Poly (hydroxy alkanoate) s in Medical Applications
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[68] Polyhydroxyalkanoate-based amphiphilic diblock copolymers as original biocompatible nanovectors
Polymer Chemistry, 2015
[69] Antisense oligonucleotide delivery to cancer cell lines for the treatment of different cancer types
Artificial Cells, Nanomedicine, and Biotechnology, 2015
[70] Commercialization of Bacterial Cell Factories for the Sustainable Production of Polyhydroxyalkanoate Thermoplastics: Progress and Prospects
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[71] Poly (hydroxy alkanoate) s in Medical Applications.
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[72] Linear and three-arm star hydroxytelechelic poly (benzyl β-malolactonate) s: a straightforward one-step synthesis through ring-opening polymerization
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[73] Simple synthesis of amphiphilic poly (3-hydroxy alkanoate) s with pendant hydroxyl and carboxylic groups via thiol-ene photo click reactions
Polymer Degradation and Stability, 2015
[74] PHB 及 mPEG-PHB 嵌段共聚物的合成与表征
化学与生物工程, 2015
[75] A novel poly (propylene-co-imidazole) based biofuel cell: System optimization and operation for energy generation
Materials Science and Engineering: C, 2015
[76] Aligned bacterial PHBV nanofibrous conduit for peripheral nerve regeneration
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[77] Polyhydroxyalkanoates as Potential Biomaterials for Neural Tissue Regeneration
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[78] 两亲性三嵌段共聚物 PHB-PEG-PHB 的合成及其纳米粒子的制备与表征
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[79] Development and operation of gold and cobalt oxide nanoparticles containing polypropylene based enzymatic fuel cell for renewable fuels
Biosensors and Bioelectronics, 2014
[80] Electrical Energy Generation from a Novel Polypropylene Grafted Polyethylene Glycol Based Enzymatic Fuel Cell
Analytical Letters, 2014
[81] Synthesis and Characterization of the Novel Thermoresponsive Conjugates Based on Poly (3-hydroxy alkanoates)
Journal of Polymers and the Environment, 2014
[82] Modification of polyhydroxyalkanoates (PHAs)
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[83] Nass-und plasmachemische Oberfl?chenmodifizierung biodegradierbarer, polymerer Implantatwerkstoffe unter Immobilisierung von Wirkstoffen zur Optimierung der Zelle-Implantat-Interaktion
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[84] Synthesis of poly-(3-hydroxybutyrate-co-12 mol% 3-hydroxyvalerate) by Bacillus cereus FB11: its characterization and application as a drug carrier
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[85] Photoinduced modification of the natural biopolymer poly (3-hydroxybutyrate-co-3-hydroxyvalerate) microfibrous surface with anthraquinone-derived dextran for biological applications
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[86] Second-generation functionalized mediumchain-length polyhydroxyalkanoates: the gateway to high-value bioplastic applications
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[87] Bioplastics from waste glycerol derived from biodiesel industry
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[88] Synthesis of antibacterial amphiphilic elastomer based on polystyrene-block-polyisoprene-block-polystyrene via thiol-ene addition
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[89] Versatile photochemical surface modification of biopolyester microfibrous scaffolds with photogenerated silver nanoparticles for antibacterial activity
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[90] Optical characterization of CdS nanoparticles embedded into the comb-type amphiphilic graft copolymer
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[91] Comparison of covalent and noncovalent interactions of carbon nanotubes on the crystallization behavior and thermal properties of poly (3‐hydroxybutyrate‐co‐3‐hydroxyvalerate)
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[92] Advances in the applications of polyhydroxyalkanoate nanoparticles for novel drug delivery system
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[93] In vivo application of poly-3-hydroxyoctanoate as peripheral nerve graft
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[94] DNA adsorption and dynamic mechanical analysis of polymeric oil/oil acid copolymers
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[95] Isolation and characterization of polyhydroxyalkanoates-accumulating bacteria from cassava starch processing wastewater
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[96] Second-generation functionalized medium-chain-length polyhydroxyalkanoates: the gateway to high-value bioplastic applications
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[97] Photoinduced modification of the natural biopolymer poly (3-hydroxybutyrate-co-3-hydroxyvalerate) microfibrous surface with anthraquinone-derived dextran for biological applications
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[98] Synthesis of poly-(3-hydroxybutyrate-co-12 mol % 3-hydroxyvalerate) by Bacillus cereus FB11: its characterization and application as a drug carrier
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[99] Comparison of covalent and noncovalent interactions of carbon nanotubes on the crystallization behavior and thermal properties of poly(3‐hydroxybutyrate‐co‐3 …
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[100] Biopolimeri
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[101] Morphology-induced hydrophobic behavior of electrospun polyhydroxyalkanoate membranes
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[102] The efficacy of silver-embedded polypropylene-grafted polyethylene glycol-coated ventricular catheters on prevention of shunt catheter infection in rats
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[103] Radical polymerization of novel N‐substituted‐N‐vinylformamide derivatives with bulky chiral substitutents
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[104] Natural biopolymer surface of poly (3-hydroxybutyrate-co-3-hydroxyvalerate)-photoinduced modification with triarylsulfonium salts
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[105] Polylactide block copolymers using trimethylene carbonate with methoxyethoxy side groups for dual modification of hydrophilicity and biodegradability
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[106] Disruption of β-oxidation pathway in Pseudomonas putida KT2442 to produce new functionalized PHAs with thioester groups
Applied microbiology and biotechnology, 2011
[107] Acetylsalicylic acid loading and release studies of the PMMA‐g‐polymeric oils/oily acids micro and nanospheres
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[108] Manipulation of Polyhydroxybutyrate Properties through Blending with Ethyl-Cellulose for a Composite Biomaterial
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[109] Research Article Manipulation of Polyhydroxybutyrate Properties through Blending with Ethyl-Cellulose for a Composite Biomaterial
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[110] Present and Future of Thermoplastic Elastomers As Environmentally Friendly Organic Materials
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[111] Polyhydroxyalkanoates: A way to sustainable development of bioplastics
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