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1Strategies for regeneration of components of nervous system: scaffolds, cells and biomolecules显示文摘Nerve diseases including acute injury such as peripheral nerve injury(PNI),spinal cord injury(SCI)and traumatic brain injury(TBI),and chronic disease like neurodegeneration disease can cause various function disorders of nervous system,such as those relating to memory and voluntary movement.These nerve diseases produce great burden for individual families and the society,for which a lot of efforts have been made.Axonal pathways represent a unidirectional and aligned architecture allowing systematic axonal development within the tissue.Following a traumatic injury,the intricate architecture suffers disruption leading to inhibition of growth and loss of guidance.Due to limited capacity of the body to regenerate axonal pathways,it is desirable to have biomimetic approach that has the capacity to graft a bridge across the lesion while providing optimal mechanical and biochemical cues for tissue regeneration.And for central nervous system injury,one more extra precondition is compulsory:creating a less inhibitory surrounding for axonal growth.Electrospinning is a cost-effective and straightforward technique to fabricate extracellular matrix(ECM)-like nanofibrous structures,with various fibrous forms such as random fibers,aligned fibers,3D fibrous scaffold and core-shell fibers from a variety of polymers.The diversity and versatility of electrospinning technique,together with functionalizing cues such as neurotrophins,ECM-based proteins and conductive polymers,have gained considerable success for the nerve tissue applications.We are convinced that in the future the stem cell therapy with the support of functionalized electrospun nerve scaffolds could be a promising therapy to cure nerve diseases.Lingling Tian Molamma P.Prabhakaran Seeram Ramakrishna 2015Regenerative Biomaterials2015,2,1:17
2Efficacy of low dose peginterferon alpha-2b with ribavirin on chronic hepatitis C显示文摘AIM: To assess the effi cacy of peginterferon alpha 2b at doses of 50 μg weekly and 80 μg weekly (based on body weight) plus ribavirin in HCV genotype 2 and genotype 3 chronic hepatitis C patients. METHODS: During the study period of Jan 2002 to Dec 2003, all patients diagnosed as chronic hepatitis C or HCV related compensated cirrhosis were treated with peginterferon alpha 2b 50 μg S/C weekly (body weight < 60 kg) or 80 μg S/C weekly (body weight > 60 kg) plus ribavirin 800 mg/d for 24 wk. RESULTS: Overall 28 patients, 14 patients in each group (based on body weight) were treated during the period. Out of 28 patients, 75% were genotype 3, 18% were genotype 2 and 7% were genotype 1. The mean dose of peginterferon alpha 2b was 0.91 μg/kg in group 1 and 1.23 μg/kg in group 2 respectively. The end of treatment and sustained virologic response rates were 82% and 78% respectively. Serious adverse effects were seen in 3.5% patients. CONCLUSION: Low dose peginterferon alpha 2b in combination with ribavirin for 24 wk is effective in HCV genotype 2 and 3 chronic hepatitis C patients.Rajesh Gupta CH Ramakrishna Sandeep Lakhtakia Manu Tandan Rupa Banerjee D Nageshwar Reddy 2006World Journal of Gastroenterology2006,12,34:10
3A kinetic study on pyrolysis and combustion characteristics of oil cakes: Effect of cellulose and lignin content显示文摘Pyrolysis and combustion characteristics of three different oil cakes such as Pongamia(Pongamia Pinnata),Madhuca(Madhuca Indica),and Jatropha(Jatropha curcas) were investigated in this study.The cellulose and lignin contents of oil cakes play very important role in pyrolysis and combustion processes.A kinetic investigation of three oil cakes was carried out and major part of the samples decomposed between 210℃ and 500℃.Pyrolysis and combustion were carried out with the mixtures of cellulose and lignin chemicals in different ratios and compared with the oil cakes.The biomass with higher cellulose content showed faster rate of pyrolysis than the biomass with higher lignin content.However at higher temperatures(>600℃) all the oil cakes exhibited similar conversion at low heating rate in N2 atmosphere.Apparent activation energies increased for Madhuca and Pongamia oil cakes indicating the presence of more cellulose whereas,low activation energy of Jatropha confirms more lignin content.Ramakrishna Gottipati Susmita Mishra 2011燃料化学学报2011,39,4:10
4Neuroendocrine neoplasms of liver-A 5-year retrospective clinico-pathological study applying World Health Organization 2010 classification显示文摘AIM To study the clinicopathological characteristics of neuroendocrine neoplasms(NEN) on liver samples and apply World Health Organization(WHO) 2010 grading of gastroenteropancreatic(GEP) NEN.METHODS Clinicopathological features of 79 cases of NEN of the liver diagnosed between January 2011 to December 2015 were analyzed. WHO 2010 classification of GEP NEN was applied and the tumors were graded as G1, G2 or G3. Two more categories, D1/2(discordant 1/2) and D2/3(discordant 2/3) were also applied. The D1/2 grade tumors had a mitotic count of G1 and Ki-67 index of G2. The D2/3 tumors had a mitotic count of G2 and Ki-67 index of G3. The follow up details which were available till the end of the study period(December 2015) were collected.RESULTS Of the 79 tumors, 16 each were G1 and G2, and 18 were G3 tumors. Of the remaining 29 tumors, 13 were assigned to D1/2 and 16 were D2/3 grade. Male preponderance was noted in all tumors except for G2 neoplasms, which showed a slight female predilection. The median age at presentation was 47 years(range 10-82 years). The most common presentation was abdominal pain(81%). Pancreas(49%) was the most common site of primary followed by gastrointestinal tract(24.4%) and lungs(18%). Radiologically, 87% of the patients had multiple liver lesions. Histopathologically, necrosis was seen in only D2/3 and G3 tumors. Microvascular invasion was seen in all grades. Metastasis occurred in all grades of primary NEN and the grades of the metastatic tumors and their corresponding primary tumors were similar in 67% of the cases. Of the 79 patients, 36 had at least one follow up visit with a median duration of follow up of 8.5 mo(range: 1-50 mo). This study did not show any impact of the grade of tumor on the short term clinical outcome of these patients.CONCLUSION Liver biopsy is an important tool for clinicopathological characterization and grading of NEN, especially when the primary is not identified. Eighty-seven percent of the patients had multifocal liver lesions irrespective of the WHO grade, indicating a higher stage of disease at presentation. Follow up duration was inadequate to derive any meaningful conclusion on long term outcome in our study patients.Deepak Kalyansingh Burad Thomas Alex Kodiatte Sayd Mohamed Rajeeb Ashish Goel Chundamannil Eapen Eapen Banumathi Ramakrishna 2016World Journal of Gastroenterology2016,22,40:10
5距腓前韧带损伤影响踝关节外侧结构不稳的诊疗进展显示文摘踝关节损伤在临床上属于最常见的运动性损伤类型之一,约占所有运动损伤的25%[1],稳定踝关节外侧的主要结构即距腓前韧带(ATFL)、距腓后韧带和跟腓韧带(CFL)[2].在所有踝关节外侧副韧带损伤中,ATFL撕裂伤的发生率约为70%[3].临床上ATFL易损伤,漏诊率极高,因此,理解ATFL的解剖学特征、损伤机制对于踝关节损伤的治疗非常重要.现将ATFL的解剖学特征、损伤机制、主要影像学检查、国内外治疗的研究现状介绍如下.张松 顾加祥 刘宏君 张乃臣 许涛 Ramakrishna Yadlapalli 2019实用临床医药杂志2019,23,15:8
6A state-of-the-art review of the fabrication and characteristics of titanium and its alloys for biomedical applications显示文摘Commercially pure titanium and titanium alloys have been among the most commonly used materials for biomedical applications since the 1950 s.Due to the excellent mechanical tribological properties,corrosion resistance,biocompatibility,and antibacterial properties of titanium,it is getting much attention as a biomaterial for implants.Furthermore,titanium promotes osseointegration without any additional adhesives by physically bonding with the living bone at the implant site.These properties are crucial for producing high-strength metallic alloys for biomedical applications.Titanium alloys are manufactured into the three types ofα,β,andα+β.The scientific and clinical understanding of titanium and its potential applications,especially in the biomedical field,are still in the early stages.This review aims to establish a credible platform for the current and future roles of titanium in biomedicine.We first explore the developmental history of titanium.Then,we review the recent advancement of the utility of titanium in diverse biomedical areas,its functional properties,mechanisms of biocompatibility,host tissue responses,and various relevant antimicrobial strategies.Future research will be directed toward advanced manufacturing technologies,such as powder-based additive manufacturing,electron beam melting and laser melting deposition,as well as analyzing the effects of alloying elements on the biocompatibility,corrosion resistance,and mechanical properties of titanium.Moreover,the role of titania nanotubes in regenerative medicine and nanomedicine applications,such as localized drug delivery system,immunomodulatory agents,antibacterial agents,and hemocompatibility,is investigated,and the paper concludes with the future outlook of titanium alloys as biomaterials.Masoud Sarraf Erfan Rezvani Ghomi Saeid Alipour Seeram Ramakrishna Nazatul Liana Sukiman 2022Bio-Design and Manufacturing2022,5,2:8
7Differentiation of Crohn’s disease from intestinal tuberculosis in India in 2010显示文摘Differentiating intestinal tuberculosis from Crohn’s disease (CD) is an important clinical challenge of considerable therapeutic significance. The problem is of greatest magnitude in countries where tuberculosis continues to be highly prevalent, and where the incidence of CD is increasing. The final clinical diagnosis is based on a combination of the clinical history with endoscopic studies, culture and polymerase chain reaction for Mycobacterium tuberculosis, biopsy pathology, radiological investigations and response to therapy. In a subset of patients, surgery is required and intraoperative findings with pathological study of the resected bowel provide a definitive diagnosis. Awareness of the parameters useful in distinguishing these two disorders in each of the different diagnostic modalities is crucial to accurate decision making. Newer techniques, such as capsule endoscopy, small bowel enteroscopy and immunological assays for Mycobacterium tuberculosis, have a role to play in the differentiation of intestinal tuberculosis and CD. This review presents currently available evidence regarding the usefulness and limitations of all these different modalities available for the evaluation of these two disorders.Anna Benjamin Pulimood Deepak Narayan Amarapurkar Ujjala Ghoshal Mathew Phillip Cannanore Ganesh Pai Duvvur Nageshwar Reddy Birender Nagi Balakrishna Siddhartha Ramakrishna 2011World Journal of Gastroenterology2011,17,4:8
8Functional self-assembling peptide nanofiber hydrogel for peripheral nerve regeneration显示文摘Peripheral nerves are fragile and easily damaged,usually resulting in nervous tissue loss,motor and sensory function loss.Advances in neuroscience and engineering have been significantly contributing to bridge the damage nerve and create permissive environment for axonal regrowth across lesions.We have successfully designed two self-assembling peptides by modifying RADA 16-I with two functional motifs IKVAV and RGD.Nanofiber hydrogel formed when combing the two neutral solutions together,defined as RADA 16-Mix that overcomes the main drawback of RADA16-I associated with low pH.In the present study,we transplanted the RADA 16-Mix hydrogel into the transected rat sciatic nerve gap and effect on axonal regeneration was examined and compared with the traditional RADA16-I hydrogel.The regenerated nerves were found to grow along the walls of the large cavities formed in the graft of RADA16-I hydrogel,while the nerves grew into the RADA 16-Mix hydrogel toward distal position.RADA 16-Mix hydrogel induced more axons regeneration and Schwann cells immigration than RADA16-I hydrogel,resulting in better functional recovery as determined by the gait-stance duration percentage and the formation of new neuromuscular junction structures.Therefore,our results indicated that the functional SAP RADA16-Mix nanofibrous hydrogel provided a better environment for peripheral nerve regeneration than RADA16-I hydrogel and could be potentially used in peripheral nerve injury repair.Xiaoli Wu Liumin He Wen Li Heng Li Wai-Man Wong Seeram Ramakrishna Wutian Wu 2017Regenerative Biomaterials2017,4,1:6
9Simultaneous determination of amlodipine,valsartan and hydrochlorothiazide by LC-ESIMS/MS and its application to pharmacokinetics in rats显示文摘Polypill is a fixed-dose combination that contains three or more active ingredients used as a single daily pill to achieve a large effect in preventing cardiovascular disease with minimal adverse effects.A novel and accurate liquid chromatography tandem mass spectrometry method using electrospray ionization mode has been developed and validated for the simultaneous determination of amlodipine(AMD),valsartan(VAL) using losartan(LOS) as an internal standard(IS),and hydrochlorothiazide(HCT) using furosemide(FSD) as an IS.The separation was carried on Aquasil C_(18)(50 mm×2.1 mm,5μm) reversed phase column using acetonitrile and water containing 0.1%formic acid(50:50,v/v) as the mobile phase.The method was validated in terms of linearity,accuracy and precision over the concentration range of 1-1000 ng/mL.The intra and inter-day precision and accuracy,stability and extraction recoveries of all the analytes were in the acceptable range.This method can be successfully applied to the pharmacokinetic study of AMD,VAL and HCT when given as a polypill.Shankar Ganesh Gadepalli Pragney Deme Madhusudana Kuncha Ramakrishna Sistla 2014Journal of Pharmaceutical Analysis2014,4,6:5
10Surface modification of magnesium alloys using thermal and solid-state cold spray processes:Challenges and latest progresses显示文摘Potential engineering applications of magnesium(Mg)and Mg-based alloys,as the lightest structural metal,have made them a popular subject of study.However,the inferior corrosion and wear characteristics significantly limit their application range.It is widely recognized that surface treatment is the most commonly utilized technique for remarkably improving a substrate’s surface characteristics.Numerous methods have been introduced for the surface treatment of Mg and Mg-based alloys to improve their corrosion behavior and tribological performance.Among these,thermal spray(TS)technology provides several methods for deposition of various functional metallic,ceramic,cermet,or other coatings tailored to particular conditions.Recent researches have shown the tremendous potential for thermal spray coated Mg alloys for biomedical and industrial applications.In this context,the cold spray(CS)method,as a comparatively new TS coating technique,can generate the coating layer using kinetic energy rather than combined thermal and kinetic energies,like the high-velocity oxy-fuel(HVOF)spray method.Moreover,the CS process,as a revolutionary method,is able to repair and refurbish with a faster turnaround time;it also provides solutions that do not require dealing with the thermal stresses that are part of the other repair processes,such as welding or other TS processes using a high-temperature flame.In this review paper,the recently designed coatings that are specifically applied to Mg alloys(primarily for industrial applications)employing various coating processes are reviewed.Because of the increased utilization of CS technology for both 3D printed(additively manufactured)coatings and repair of structurally critical components,the most recent CS methods for the surface treatment,repair,and refurbishment of Mg alloys as well as their benefits and restrictions are then discussed and reviewed in detail.Lastly,the prospects of this field of study are briefly discussed,along with a summary of the presented work.Mohammadreza Daroonparvar Hamid Reza Bakhsheshi-Rad Abbas Saberi Mahmood Razzaghi Ashish K Kasar Seeram Ramakrishna Pradeep L.Menezes Manoranjan Misra Ahmad Fauzi Ismail Safian Sharif Filippo Berto 2022Journal of Magnesium and Alloys2022,10,8:4
11Emerging design principles,materials,and applications for moisture-enabled electric generation显示文摘Smart generators that collect energy from the ambient environment are a new approach for meeting growing global energy needs.Moisture is one of the most abundant resources in the ambient environment,and using it to generate electricity has aroused great interest in recent years.In this review,we first summarize the emerging design principles of moisture power generation,including ion diffusion,streaming potential,and charged surface potential.Then,based on these fundamental principles,we systematically summarize the materials thus far known to be suitable for moisture power generation.Finally,we highlight the application of moisture energy generators in various fields,such as thermoelectricity,solar thermal evaporation,capacitors,strain sensors,and information storage,and discuss current challenges and future prospects for the development of moisture energy generators.Zhaoyang Sun Xian Wen Liming Wang Dongxiao Ji Xiaohong Qin Jianyong Yu Seeram Ramakrishna 2022eScience2022,2,1:4
12Stall Characteristics and Tip Clearance Effects in Forward Swept Axial Compressor Rotors显示文摘Tilting the blade sections to the flow direction (blade sweep) would increase the operating range of an axial compressordue to modifications in the pressure and velocity fields on the suction surface. On the other band, bladetip gap, though finite, has great influence on the performance of a turbomachine. The present paper investigatesthe combined effect of these two factors on various flow characteristics in a low speed axial flow compressor. Forthis present study, nine computational domains were modeled; three rotor sweep configurations (0°, 20° and 30°)and for three different clearance levels for each rotor. Commercial CFD solver ANSYS CFX 11.0 is used for thesimulations. Results indicated that tip chordline sweep is found to improve the stall margin of the compressor bymodifying the suction surface boundary layer migration phenomenon. Diffusion Factor (DF) contours showed theseverity of stalling with unswept rotor. For the swept rotors, the zones of high probable stall are less severe andthey become less in size with increasing sweep. Increment in the tip gap is found to gradually affect the performanceof unswept rotor, while the effect is very high for the two swept rotors for the earlier increments. As a minimumclearance is unavoidable, swept rotors suffer relatively higher deviation from the idealistic behavior than theunswept rotor due to tip clearance.Ramakrishna PV Govardhan M 2009Journal of Thermal Science2009,18,1:4
13Investigations on Heat Transfer Enhancement in Pool Boiling with Water-CuO Nano-Fluids显示文摘The main focus of the present work is to investigate Critical Heat Flux (CHF) enhancement using CuO nanofluid relative to CHF of pure water. To estimate the effect of nanoparticles on the CHF, pool boiling CHF values were measured for various volume concentrations of CuO nanofluid and compared with pure water. CHF enhancement of 130% was recorded at 0.2 % by volume of CuO nano-fluids. Surface roughness of the heater surface exposed to three measured heating cycles indicated surface modifications at different volume concentrations of nanofluid. SEM image of the heater surface revealed porous layer build up, which is thought to be the reason for CHF enhancement.Ramakrishna N. Hegde Dr. Shrikantha S. Rao R. P. Reddy 2012Journal of Thermal Science2012,21,2:4
14A simulation study of using active traffic management strategies on congested freeways显示文摘The main objective of this study is to evaluate the effectiveness of using active traffic management (ATM) strategies on freeways in terms of the driver's behavior and operational impacts. A few test beds were selected to evaluate the impacts of ATM such as speed harmonization, shoulder utilization, and ramp metering. Test beds used in this study were at places where an ATM is either proposed or previously implemented, i.e., where data exists for conditions prior to and after the implementation of ATM. Data collected from the test beds were used in a simulation model to evaluate the impacts of each ATM strategy on speed, travel time, and crash rates. Simulation results indicated that the implementation of speed harmonization on US 90 showed a 14% reduction in crashes and a 2%-3% increase in freeway speed; the implementation of hard shoulders on US 90 showed a 39% increase in travel time, 22% increase in freeway capacity and 60% decrease in delays; and the implementation of ramp metering on US 59 between Bissonnet St. and Fondern road showed a decrease of 23 % in freeway travel time, a 14% increase in freeway speed and 11% decrease in accident rates.Ramakrishna VADDE Joseph O. SAI Mohammed A. FARUQI Pat T. LEELANI 2012Journal of Modern Transportation2012,20,3:3
15Effects of nanotopography on stem cell phenotypes显示文摘Stem cells are unspecialized cells that can self renew indefinitely and differentiate into several somatic cells given the correct environmental cues.In the stem cell niche,stem cell-extracellular matrix(ECM)interactions are crucial for different cellular functions,such as adhesion,proliferation,and differentiation.Recently, in addition to chemical surface modifications,the importance of nanometric scale surface topography and roughness of biomaterials has increasingly becoming recognized as a crucial factor for cell survival and host tissue acceptance in synthetic ECMs.This review describes the influence of nanotopography on stem cell phenotypes.Rajeswari Ravichandran Clarisse CH Ng Casey K Chan Michael Raghunath Seeram Ramakrishna 2009World Journal of Stem Cells2009,1,1:3
16Simultaneous determination of atorvastatin,metformin and glimepiride in human plasma by LC-MS/MS and its application to a human pharmacokinetic study显示文摘A simple, rapid and sensitive liquid chromatography-tandem mass spectrometric (LC-MS/ MS) assay method has been developed and fully validated for the simultaneous quantification of atorvastatin, metformin and glimepiride in human plasma. Carbamazepine was used as internal standard (IS). The analytes were extracted from 200 mL aliquots of human plasma via protein precipitation using acetonitrile. The reconstituted samples were chromatographed on a Alltima HP C18 column by using a 60:40 (v/v) mixture of acetonitrile and 10 mM ammonium acetate (pH 3.0) as the mobile phase at a flow rate of 1.1 mL/min. The calibration curves obtained were linear (r 2 Z0.99) over the concentration range of 0.50-150.03 ng/mL for atorvastatin, 12.14-1207.50 ng/mL for metformin and 4.98-494.29 ng/mL for glimepiride. The API-4000 LC-MS/MS in multiple reaction monitoring (MRM) mode was used for detection. The results of the intra- and inter-day precision and accuracy studies were well within the acceptable limits. All the analytes were found to be stable in a battery of stability studies. The method is precise and sensitive enough for its intended purpose. A run time of 2.5 min for each sample made it possible to analyze more than 300 plasma samples per day. The developed assay method was successfully applied to a pharmacokinetic study in human male volunteers.Srinivasa Rao Polagani Nageswara Rao Pilli Ramakrishna Gajula Venkateswarlu Gandu 2013Journal of Pharmaceutical Analysis2013,3,1:3
17A review on polymer nanofibers by electrospinning and their applications in nanocomposites显示文摘Zheng-Ming Huang Y.-Z. Zhang M. Kotaki S. Ramakrishna 2003Composites Science and Technology2003,,15:3
18A rapid and sensitive liquid chromatography-tandem mass spectrometric assay for duloxetine in human plasma:Its pharmacokinetic application显示文摘This paper describes a simple, rapid and sensitive liquid chromatography-tandem mass spectrometry assay for the determination of duloxetine in human plasma. A duloxetine stable labeled isotope (duloxetine d 5 ) was used as an internal standard. Analyte and the internal standard were extracted from 100 mL of human plasma via solid phase extraction technique using Oasis HLB cartridges. The chromatographic separation was achieved on a C 18 column by using a mixture of acetonitrile-5 mM ammonium acetate buffer (83:17, v/v) as the mobile phase at a flow rate of 0.9 mL/min. The calibration curve obtained was linear (r 2 Z0.99) over the concentration range of 0.05-101 ng/mL. Multiple-reaction monitoring mode (MRM) was used for quantification of ion transitions at m/z 298.3/154.1 and 303.3/159.1 for the drug and the internal standard, respectively. Method validation was performed as per FDA guidelines and the results met the acceptance criteria. A run time of 2.5 min for each sample made it possible to analyze more than 300 plasma samples per day. The proposed method was found to be applicable to clinical studies.Ramakrishna Gajula Rambabu Maddela Vasu Babu Ravi Jaswanth Kumar Inamadugu Nageswara Rao Pilli 2013Journal of Pharmaceutical Analysis2013,3,1:3
19Nanocomposites for electronic applications that can be embedded for textiles and wearables显示文摘In the present review, we have selected advances in electrospinning nanofibers that we envision to be embedded in textiles and wearables. These nanofibers have been proven to be excellent options for applications such as power generation, sensing, and communication. Their similitude with already known woven meshes makes these fibers perfect for electronically active textiles.These fibers offer well known characteristics such as mechanical flexibility, high surface area-to-volume ratio, light weight and can be tuned by carefully selecting the active materials in the precursor solution. Here we will discuss polymers with electroactive, piezoelectric, triboelectric and their composites that have been used in fiber structures by using the electrospinning technique.SERRANO-GARCIA William JAYATHILAKA Wanasinghe Arachchige Dumith Madushanka CHINNAPPAN Amutha TRAN Thang Quyet BASKAR Chinnappan THOMAS Sylvia Wilson RAMAKRISHNA Seeram 2019Science China(Technological Sciences)2019,62,6:3
20Perovskite Solar Fibers:Current Status,Issues and Challenges显示文摘Perovskite-based solar cells with high power conversion efficiencies(PCEs)are currently being demonstrated in solid-state device designs.Their elevated performances can possibly be attained with different non-standard geometries,for example,the fiber-shaped perovskite solar cells,in the light of careful design and engineering.Fiber-shaped solar cells are promising in smart textiles energy harvesting towards next-generation electronic applications and devices.They can be made with facile process and at low cost.Recently,fiber-shaped perovskite solar devices have been reported,particularly with the focus on the proof-of-concept in such non-traditional architectures.In this line,there are so many technical aspects which need to be addressed,if these photovoltaic(PV)cells are to be industrialized and produced massively.Herein,a well-organized and comprehensive discussion about the reported devices in this arena is presented.The challenges that need to be addressed,the possible solutions and the probable applications of these PV cells are also discussed.More still,the perovskite fiber-shaped PV cells with other fiber PV devices reported in literature in terms of their scope,characteristic designs,performances,and other technical considerations have been summarised.Andrew Balilonda Qian Li Mike Tebyetekerwa Rogers Tusiime Hui Zhang Rajan Jose Fatemeh Zabihi Shengyuan Yang Seeram Ramakrishna Meifang Zhu 2019Advanced Fiber Materials2019,1,2:3
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