biblio

Export 8937 results:
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
B
A. Hamid, Deshpande, A. S., Badhe, Y. P., Barve, P. P., Tambe, S. S., and Kulkarni, B. D., Biodegradable iron chelate for H2S abatement: modeling and optimization using artificial intelligence strategies, Chemical Engineering Research & Design, vol. 92, no. 6, pp. 1119-1132, 2014.
S. Pal and Asha, S. K., Biodegradable, solvent-free photocrosslinkable PLLA resin formulations for additive manufacturing, Macromolecular Chemistry and Physics, vol. 223, no. 22, 2022.
R. J. Varma and Gaikwad, B. G., Biodegradation and phenol tolerance by recycled cells of candida tropicalis NCIM 3556, International Biodeterioration & Biodegradation, vol. 63, no. 4, pp. 539-542, 2009.
G. G. Bhaskar and Rita, V. J., Biodegradation of chlorobenzene and chlorophenols by pseudomonas cultures, Research Journal of Chemistry and Environment, vol. 17, no. 7, pp. 40-43, 2013.
S. A. S. Alariqi, Kumar, A. P., Rao, B. S. M., and Singh, R. P., Biodegradation of gamma-sterilised biomedical polyolefins under composting and fungal culture environments, Polymer Degradation and Stability, vol. 91, no. 5, pp. 1105-1116, 2006.
G. T. Mehetre, Dastager, S. G., and Dharne, M. S., Biodegradation of mixed polycyclic aromatic hydrocarbons by pure and mixed cultures of biosurfactant producing thermophilic and thermo-tolerant bacteria, Science of the Total Environment, vol. 679, pp. 52-60, 2019.
U. D. Phalgune, Rajamohanan, P. R., Gaikwad, B. G., Varma, R. J., and George, S., Biodegradation of phenol by the yeast candida tropicalis: an investigation by NMR spectroscopy, Applied Biochemistry and Biotechnology, vol. 169, no. 7, pp. 2029-2037, 2013.
H. Sowani, Deshpande, A., Gupta, V., Kulkarni, M., and Zinjarde, S., Biodegradation of squalene and n-hexadecane by Gordonia amicalis HS-11 with concomitant formation of biosurfactant and carotenoids, International Biodeterioration & Biodegradation, vol. 142, pp. 172-181, 2019.
D. Srinivas and Satyarthi, J. K., Biodiesel production from vegetable oils and animal fat over solid acid double-metal cyanide catalysts, Catalysis Surveys from Asia, vol. 15, no. 3, pp. 145-160, 2011.
V. Menon, Divate, R., and Rao, M., Bioethanol production from renewable polymer lichenan using lichenase from an alkalothermophilic thermomonospora sp and thermotolerant yeast, Fuel Processing Technology, vol. 92, no. 3, pp. 401-406, 2011.
P. P. Mahamuni-Badiger, Patil, P. M., Badiger, M. V., Patel, P. R., Thorat-Gadgil, B. S., Pandit, A., and Bohara, R. A., Biofilm formation to inhibition: role of zinc oxide-based nanoparticles, Materials Science & Engineering C-Materials for Biological Applications, vol. 108, p. 110319, 2020.
D. Raju, Mehta, U. J., and Beedu, S. Rao, Biogenic green synthesis of monodispersed gum kondagogu (Cochlospermum gossypium) iron nanocomposite material and its application in germination and growth of mung bean (Vigna radiata) as a plant model, IET Nanobiotechnology, vol. 10, no. 3, pp. 141-146, 2016.
K. Suranjit Prasad and Selvaraj, K., Biogenic synthesis of selenium nanoparticles and their effect on as(III)-induced toxicity on human lymphocytes, Biological Trace Element Research, vol. 157, no. 3, pp. 275-283, 2014.
K. Suranjit Prasad, Pathak, D., Patel, A., Dalwadi, P., Prasad, R., Patel, P., and Selvaraj, K., Biogenic synthesis of silver nanoparticles using nicotiana tobaccum leaf extract and study of their antibacterial effect, African Journal of Biotechnology, vol. 10, no. 41, pp. 8122-8130, 2011.
S. Iram, Khan, S., Ansary, A. Ayoobul, Arshad, M., Siddiqui, S., Ahmad, E., Khan, R. H., and Khan, M. Sajid, Biogenic terbium oxide nanoparticles as the vanguard against osteosarcoma, Spectrochimica Acta Part A-Molecular and Biomolecular Spectroscopy, vol. 168, pp. 123-131, 2016.
R. Parate, Borgave, M., Dharne, M., and Rode, C., Bioglycerol (C3) upgrading to 2,3-butanediol (C4) by cell-free extracts of Enterobacter aerogenes NCIM 2695, Journal of Chemical Technology and Biotechnology, vol. 96, no. 5, pp. 1316-1325, 2021.
M. Parthasarathy, Kannan, R., Sreekumar, K., and Pillai, V. K., Bio-inspired catalyst compositions for enhanced oxygen reduction using nanostructured Pt electrocatalysts in polymer electrolyte fuel cells, Journal of Materials Chemistry, vol. 20, no. 43, pp. 9651-9657, 2010.
J. Hee Cho, Vasagar, V., Shanmuganathan, K., Jones, A. R., Nazarenko, S., and Ellison, C. J., Bioinspired catecholic flame retardant nanocoating for flexible polyurethane foams, Chemistry of Materials, vol. 27, no. 19, pp. 6784-6790, 2015.
I. Uddin and Ahmad, A., Bioinspired eco-friendly synthesis of ZrO2 nanoparticles, Journal of Materials and Environmental Science, vol. 7, no. 9, pp. 3068-3075, 2016.
P. R. Patel, Singam, A., Iyer, A. K., and Gundloori, R. Venkata Na, Bioinspired hyaluronic acid based nanofibers immobilized with 3, 4-difluorobenzylidene curcumin for treating bacterial infections, Journal of Drug Delivery Science and Technology, vol. 74, p. 103480, 2022.
S. B. Parit, Karade, V. C., Patil, R. B., Pawar, V. N., Dhavale, R. P., Tawre, M., Pardesi, K., Jadhav, U. U., Dawkar, V. V., Tanpure, R. S., Kim, J. H., Jadhav, J. P., and Chougale, A. D., Bioinspired synthesis of multifunctional silver nanoparticles for enhanced antimicrobial and catalytic applications with tailored SPR properties, Materials Today Chemistry, vol. 17, p. 100285, 2020.
V. Bansal, Sanyal, A., Rautaray, D., Ahmad, A., and Sastry, M., Bioleaching of sand by the fungus fusarium oxysporum as a means of producing extracellular silica nanoparticles, Advanced Materials, vol. 17, no. 7, p. 889+, 2005.
M. Borsanyiova, Patil, A., Mukherji, R., Prabhune, A., and Bopegamage, S., Biological activity of sophorolipids and their possible use as antiviral agents, Folia Microbiologica, vol. 61, no. 1, pp. 85-89, 2016.
A. Dudhane and Mhaindarkar, V. P., Biological control of cyanobacteria using polyphosphate accumulating bacteria isolated from activated sludge, Journal of Pure and Applied Microbiology, vol. 5, no. 1, pp. 469-471, 2011.
S. R. Khairkar, V. Pansare, S., Shedge, A. A., Chhatre, S., Kulal, D. K., Patil, V. R., and V. Pansare, A., Biological macromolecule chitosan grafted co-polymeric composite: bio-adsorption probe on cationic dyes, Polymer Bulletin, vol. 79, no. 11, pp. 9441-9455, 2022.
R. Zhang, Noordam, L., Ou, X., Ma, B., Li, Y., Das, P., Shi, S., Liu, J., Wang, L., Li, P., Verstegen, M. M. A., D. Reddy, S., van Der Laan, L. J. W., Peppelenbosch, M. P., Kwekkeboom, J., Smits, R., and Pan, Q., Biological process of lysine-tRNA charging is therapeutically targetable in liver cancer, Liver International, vol. 41, no. 1, pp. 206-219, 2021.
A. Syed, Saedi, M. Hussain Al, Bahkali, A. H., Elgorban, A. M., Kharat, M., Pai, K., Ghodake, G., and Ahmad, A., Biological synthesis of alpha-Ag2S composite nanoparticles using the fungus Humicola sp. and its biomedical applications, Journal of Drug Delivery Science and Technology, vol. 66, p. 102770, 2021.
D. Raju, Vishwakarma, R. K., Khan, B. Mohammad, Mehta, U. J., and Ahmad, A., Biological synthesis of cationic gold nanoparticles and binding of plasmid DNA, Materials Letters, vol. 129, pp. 159-161, 2014.
A. Syed, Saraswati, S., Kundu, G. C., and Ahmad, A., Biological synthesis of silver nanoparticles using the fungus humicola sp and evaluation of their cytoxicity using normal and cancer cell lines, Spectrochimica Acta Part A-Molecular and Biomolecular Spectroscopy, vol. 114, pp. 144-147, 2013.
D. Rautaray, Sanyal, A., Bharde, A. A., Ahmad, A., and Sastry, M., Biological synthesis of stable vaterite crystals by the reaction of calcium ions with germinating chickpea seeds, Crystal Growth & Design, vol. 5, no. 2, pp. 399-402, 2005.
G. B. Gathalkar, Barsagade, D. D., and Sen, A., Biology and development of xanthopimpla pedator (hymenoptera: ichneumonidae): pupal endoparasitoid of antheraea mylitta (Lepidoptera: Saturniidae), Annals of the Entomological Society of America, vol. 110, no. 6, pp. 544-550, 2017.
R. U. Batwal and Argade, N. P., Biology-orientated synthesis of putrescine bisamides gigantamide A, dasyclamide, and cucullamide, Synthesis-Stuttgart, vol. 45, no. 20, pp. 2888-2892, 2013.
N. A. Gokhale, Trivedi, N. S., Mandavgane, S. A., and Kulkarni, B. D., Biomass ashes as potent adsorbent for pesticide: prediction of adsorption capacity by artificial neural network, International Journal of Environmental Science and Technology, vol. 17, no. 6, pp. 3209-3216, 2020.
R. S. Thombal, Jadhav, A. R., and Jadhav, V. H., Biomass derived beta-cyclodextrin-SO3H as a solid acid catalyst for esterification of carboxylic acids with alcohols, RSC Advances, vol. 5, no. 17, pp. 12981-12986, 2015.
M. S. Singhvi and Gokhale, D. V., Biomass exploitation - a challenge finding its way to reality, Current Science, vol. 108, no. 9, pp. 1593-1594, 2015.
M. Singhvi and Gokhale, D. V., Biomass to biodegradable polymer (PLA), RSC Advances, vol. 3, no. 33, pp. 13558-13568, 2013.
A. Jain, Ghosh, M., Krajewski, M., Kurungot, S., and Michalska, M., Biomass-derived activated carbon material from native European deciduous trees as an inexpensive and sustainable energy material for supercapacitor application, Journal of Energy Storage, vol. 34, p. 102178, 2021.
A. A. Kashale, Dwivedi, P. K., Sathe, B. R., Shelke, M. V., Chang, J. - Y., and Ghule, A. V., Biomass-mediated synthesis of Cu-doped TiO2 nanoparticles for improved-performance lithium-ion batteries, ACS Omega, vol. 3, no. 10, pp. 13676-13684, 2018.
M. Karthikeyan and Vyas, R., Biomedical literature mining for protein-protein interactions analysis using electronic mailing system, in 253rd National Meeting of the American-Chemical-Society (ACS) on Advanced Materials, Technologies, Systems, and Processes, San Francisco, CA, 2017.
C. Sharan, Khandelwal, P., and Poddar, P., Biomilling of rod-shaped ZnO nanoparticles: a potential role of saccharomyces cerevisiae extracellular proteins, RSC Advances, vol. 5, no. 3, pp. 1883-1889, 2015.
B. Mazumder, Uddin, I., Khan, S., Ravi, V., Selvraj, K., Poddar, P., and Ahmad, A., Bio-milling technique for the size reduction of chemically synthesized BiMnO3 nanoplates, Journal of Materials Chemistry, vol. 17, no. 37, pp. 3910-3914, 2007.
S. B. Markad and Argade, N. P., Biomimetic collective total synthesis of bioactive carbazole alkaloids indizoline, mafaicheenamine A, claulamine A, claulansine A, and the proposed claulamine E, Journal of Organic Chemistry, vol. 81, no. 12, pp. 5222-5227, 2016.
A. Ayoobul Ansary, Uddin, I., and Khan, M. I., Biomimetic synthesis of CdSe nanoparticles with potential bioimaging applications, International Journal of Pharmaceutical Sciences and Research, no. 22, pp. 2526-2532, 2017.
S. D. Vaidya and Argade, N. P., Biomimetic synthesis of phaitanthrin e involving a fragmentation of sp(3) carbon-carbon bond: synthesis and rearrangement of phaitanthrin D to phaitanthrin E, Organic Letters, vol. 17, no. 24, pp. 6218-6221, 2015.
K. S. Prasad, Vyas, P., Prajapati, V., Patel, P., and Selvaraj, K., Biomimetic synthesis of selenium nanoparticles using cell-free extract of microbacterium sp ARB05, Micro & Nano Letters, vol. 7, no. 1, pp. 1-4, 2012.
D. H. Dethe, Erande, R. D., and Ranjan, A., Biomimetic total syntheses of flinderoles B and C, Journal of the American Chemical Society, vol. 133, no. 9, pp. 2864-2867, 2011.
T. K. Kotammagari, Gonnade, R. G., and Bhattacharya, A. K., Biomimetic total synthesis of angiopterlactone B and other potential natural products, Organic Letters, vol. 19, no. 13, pp. 3564-3567, 2017.
K. Manojkumar, Charan, K. T. Prabhu, Sivaramakrishna, A., Jha, P. C., Khedkar, V. M., Siva, R., Jayaraman, G., and Vijayakrishna, K., Biophysical characterization and molecular docking studies of imidazolium based polyelectrolytes-DNA complexes: role of hydrophobicity, Biomacromolecules, vol. 16, no. 3, pp. 894-903, 2015.
N. Khandelwal, Doke, D. S., Khandare, J. J., Jawale, P. V., Biradar, A. V., and Giri, A. P., Bio-physical evaluation and in vivo delivery of plant proteinase inhibitor immobilized on silica nanospheres, Colloids and Surfaces B-Biointerfaces, vol. 130, pp. 84-92, 2015.
S. Shankar and Laxman, R. Seeta, Biophysicochemical characterization of an alkaline protease from beauveria sp. MTCC 5184 with multiple applications, Applied Biochemistry and Biotechnology, vol. 175, no. 1, pp. 589-602, 2015.
V. Dhaware, Diaz, D. Diaz, and Gupta, S. Sen, Biopolymer/glycopolypeptide-blended scaffolds: synthesis, characterization and cellular interactions, Chemistry-An Asian Journal, 2019.
E. K. Pathan, Patil, A. V., and Deshpande, M. V., Bioprospecting of fungal entomo- and myco-pathogens, in Advancing Frontiers in Mycology & Mycotechnology, Springer, 2019, pp. 497-513.
S. Chowdhury, Sinha, N., Ganguli, P., Bhowmick, R., Singh, V., Nandi, S., and Sarkar, R. R., BIOPYDB: a dynamic human cell specific biochemical pathway database with advanced computational analyses platform, Journal of integrative bioinformatics, vol. 15, no. 3, 2018.
R. Prasad, Aiyer, S., Chauhan, D. S., Srivastava, R., and Selvaraj, K., Bioresponsive carbon nano-gated multifunctional mesoporous silica for cancer theranostics, Nanoscale, vol. 8, no. 8, pp. 4537-4546, 2016.
N. Singh, Karambelkar, A., Gu, L., Lin, K., Miller, J. S., Chen, C. S., Sailor, M. J., and Bhatia, S. N., Bioresponsive mesoporous silica nanoparticles for triggered drug release, Journal of the Americal Chemical Society, vol. 133, no. 49, pp. 19582-19585, 2011.
R. Samson, Navale, G. R., and Dharne, M. S., Biosensors: frontiers in rapid detection of COVID-19, 3 Biotech, vol. 10, no. 9, p. 385, 2020.
S. P. Patil, Jadhav, S. N., Rode, C. V., Shejwal, R. V., and Kumbhar, A. S., Bio-surfactant: a green and environmentally benign reaction medium for ligand-free Pd-catalyzed Mizoroki-Heck cross-coupling reaction in water, Transition Metal Chemistry, vol. 45, no. 6, pp. 403-411, 2020.
A. Arora, Cameotra, S. Singh, Kumar, R., Balomajumder, C., Singh, A. Kumar, Santhakumari, B., Kumar, P., and Laik, S., Biosurfactant as a promoter of methane hydrate formation: thermodynamic and kinetic studies, Scientific Reports, vol. 6, p. 20893, 2016.
G. Bhattacharjee, Barmecha, V., Pradhan, D., Naik, R., Zare, K., Mawlankar, R. R., Dastager, S. Gulam, Kushwaha, O. Singh, and Kumar, R., Biosurfactant surfactin as a kinetic promoter for methane hydrate formation, Energy Procedia, vol. 105, pp. 5011-5017, 2017.
K. Joshi-Navare and Prabhune, A., Biosurfactant-sophorolipid acts in synergy with antibiotics to enhance their efficiency, Biomed Research International, p. 512495, 2013.
P. Singh, Kalunke, R. M., Shukla, A., Tzfadia, O., V. Thulasiram, H., and Giri, A. P., Biosynthesis and tissue-specific partitioning of camphor and eugenol in Ocimum kilimandscharicum, Phytochemistry, vol. 177, p. 112451, 2020.
M. Itkin, Heinig, U., Tzfadia, O., Bhide, A. J., Shinde, B., Cardenas, P. D., Bocobza, S. E., Unger, T., Malitsky, S., Finkers, R., Tikunov, Y., Bovy, A., Chikate, Y., Singh, P., Rogachev, I., Beekwilder, J., Giri, A. P., and Aharoni, A., Biosynthesis of antinutritional alkaloids in solanaceous crops is mediated by clustered genes, Science, vol. 341, no. 6142, pp. 175-179, 2013.
E. Ahmad Siddiqui, Ahmad, A., Julius, A., Syed, A., Khan, S., Kharat, M., Pai, K., Kadoo, N. Y., and Gupta, V., Biosynthesis of anti-proliferative gold using endophytic fusarium oxysporum strain isolated from neem (A-indica) leaves, Current topics in medicinal chemistry, vol. 16, no. 18, pp. 2036-2042, 2016.
I. Uddin, Ahmad, A., Siddiqui, E. Ahmad, Rahaman, S. Hasanur, and Gambhir, S., Biosynthesis of fluorescent Bi2S3 nanoparticles and their application as dual-functionSPECT-CT probe for animal imaging, Current Topics In Medicinal Chemistry, vol. 16, no. 18, pp. 2019-2025, 2016.
A. Patil, Joshi-Navre, K., Mukherji, R., and Prabhune, A., Biosynthesis of glycomonoterpenes to attenuate quorum sensing associated virulence in bacteria, Biotechnology and Applied Biochemistry, vol. 181 , no. 4, pp. 1533-1548, 2017.
B. Ankamwar, Damle, C., Ahmad, A., and Sastry, M., Biosynthesis of gold and silver nanoparticles using emblica officinalis fruit extract, their phase transfer and transmetallation in an organic solution, Journal of Nanoscience and Nanotechnology, vol. 5, no. 10, pp. 1665-1671, 2005.
Y. Bhandari, Varma, S., Sawant, A., Beemagani, S., Jaiswal, N., Chaudhari, B. P., and Vamkudoth, K. Rao, Biosynthesis of gold nanoparticles by Penicillium rubens and catalytic detoxification of ochratoxin A and organic dye pollutants, International Microbiology, vol. 26, no. 4, pp. 765-780, 2023.
K. Suranjit Prasad, Patel, H., Patel, T., Patel, K., and Selvaraj, K., Biosynthesis of Se nanoparticles and its effect on UV-induced DNA damage, Colloids and Surfaces B-Biointerfaces, vol. 103, pp. 261-266, 2013.
S. U. Ekar, Khollam, Y. B., Koinkar, P. M., Mirji, S. A., Mane, R. S., Naushad, M., and Jadhav, S. S., Biosynthesis of silver nanoparticles by using ganoderma-mushroom extract, Modern Physics Letters B, vol. 29, no. 6-7, p. 1540047, 2015.
A. A. Kashale, Rasal, A. S., Kamble, G. P., Ingole, V. H., Dwivedi, P. K., Rajoba, S. J., Jadhav, L. D., Ling, Y. C., Chang, J. Y., and Ghule, A. V., Biosynthesized Co-doped TiO2 nanoparticles based anode for lithium-ion battery application and investigating the influence of dopant concentrations on its performance, Composites Part B: Engineering, vol. 167, pp. 44-50, 2019.
A. M. Sawant and Vamkudoth, K. Rao, Biosynthetic process and strain improvement approaches for industrial penicillin production, Biotechnology Letters, vol. 44, no. 2, pp. 179-192, 2022.
P. Verma, Khan, S. A., Parasharami, V., and Mathur, A. K., Biotechnological interventions to modulate terpenoid indole alkaloid pathway in catharanthus roseus using in vitro tools and approaches, in Catharanthus Roseus: Current Research and Future Prospects, Switzerland: Springer International Publishing, 2017, pp. 247-275.
A. Ahmad, Biotechnology of endophytic fungi: inorganic nanomaterials and drugs, Medicinal Chemistry Research, vol. 19, p. S3, 2010.
V. Sunder Avinash, Chauhan, P. Dinesh, Gaikwad, S., and Pundle, A., Biotransformation of penicillin V to 6-aminopenicillanic acid using immobilized whole cells of E. coli expressing a highly active penicillin V acylase, Preparative Biochemistry & Biotechnology, vol. 47, no. 1, pp. 52-57, 2017.
A. Kumar and Ahmad, A., Biotransformation of vinblastine to vincristine by the endophytic fungus fusarium oxysporum isolated from catharanthus roseus, Biocatalysis and Biotransformation, vol. 31, no. 2, pp. 89-93, 2013.
R. Chansarkar, Kelkar, A. A., and Chaudhari, R. V., Biphasic hydroformylation of 1,4-diacetoxy-2-butene: a kinetic study, Industrial & Engineering Chemistry Research, vol. 46, no. 25, pp. 8629-8637, 2007.
N. Hiyoshi, Rode, C. V., Sato, O., and Shirai, M., Biphenyl hydrogenation over supported transition metal catalysts under supercritical carbon dioxide solvent, Applied Catalysis A - General, vol. 288, no. 1-2, pp. 43-47, 2005.
M. R. Maurya, Sikarwar, S., Joseph, T., and Halligudi, S. B., Bis(2-[alpha-hydroxyethyl]benzimidazolato)copper(II) anchored onto chloromethylated polystyrene for the biomimetic oxidative coupling of 2-aminophenol to 2-aminophenoxazine-3-one, Journal of Molecular Catalysis A - Chemical, vol. 236, no. 1-2, pp. 132-138, 2005.
B. Punji, Mague, J. T., and Balakrishna, M. S., Bis(2-diphenylphosphinoxynaphthalen-1-yl)methane: transition metal chemistry, Suzuki cross-coupling reactions and homogeneous hydrogenation of olefins, Dalton Transactions, no. 10, pp. 1322-1330, 2006.
D. A. Kambale, Borade, B. R., and Kontham, R., Bismuth(iii)-catalyzed bis-cyclization of propargylic diol-esters: a unified approach for the synthesis of [5,5]- and [6,5]-oxaspirolactones, Organic & Biomolecular Chemistry, vol. 19, no. 30, pp. 6618-6622, 2021.
M. S. Pratapure and Kontham, R., Bismuth(III)-catalyzed cascade condensation of alkynyl alcohols with terminal alkynes: a facile construction of propargyl cyclic ethers, Tetrahedron Letters, vol. 114, p. 154274, 2023.
A. K. Nakate, Pratapure, M. S., and Kontham, R., Bismuth(III)-catalyzed cycloisomerization and (hetero)arylation of alkynols: simple access to 2-(hetero)aryl tetrahydrofurans and tetrahydropyrans, Organic & Biomolecular Chemistry, vol. 16, no. 17, pp. 3229-3240, 2018.
M. Ghosh, Panwaria, P., Tothadi, S., Das, A., and Khan, S., Bis(silanetellurone) with C-H center dot center dot center dot Te Interaction, Inorganic Chemistry, vol. 59, no. 23, pp. 17811-17821, 2020.
S. S. Nagarkar, Das, R., Poddar, P., and Ghosh, S. K., Bistable dynamic coordination polymer showing reversible structural and functional transformations, Inorganic Chemistry, vol. 51, no. 15, pp. 8317-8321, 2012.
D. J. Late, Erande, M. B., Suryawanshi, S. R., and More, M. A., Black phosphorous nanosheets: prospective field emitter, 2015 28th International Vacuum Nanoelectronics Conference (IVNC). IEEE, 345 E 47th St, New York, NY 10017 USA, Guangzhou, Peoples R China, pp. 94-95, 2015.
P. R. Patel, Singam, A., Dadwal, A., and Gundloori, R. Venkata Na, Blend of neem oil based polyesteramide as magnetic nanofiber mat for efficient cancer therapy, Journal of Drug Delivery Science and Technology, vol. 75, p. 103629, 2022.
S. Konchada, Killi, N., Sayyad, S., Gathalkar, G. B., and Gundloori, R. V. N., Blends of neem oil based polyesteramide as nanofiber mats to control Culicidae, RSC Advances, vol. 10, no. 70, pp. 42827-42837, 2020.
G. Vannuruswamy, Rathna, G. Venkata Na, Gadgil, B. Shashikant, and Gadad, A. Panchaksha, Blends of shellac as nanofiber formulations for wound healing, Journal of Bioactive and Compatible Polymers, vol. 30, no. 5, pp. 472-489, 2015.
A. K. Lele, Iyer, B. V. S., and Juvekar, V. A., Blob-spring model for the dynamics of ring polymer in obstacle environment, XVTH International Congress on Rheology - the Society of Rheology 80th Annual Meeting, Pts 1 and 2, vol. 1027. Soc Rheol, 2 Huntington Quadrangle, STE 1no1, Melville, NY 11747-4501 USA, pp. 445-447, 2008.
P. B. Shelke, Banpurkar, A. G., Ogale, S. B., and Limaye, A. V., Blocking effects in irreversible adsorption of linear macromolecules, Surface Science, vol. 601, no. 1, pp. 274-279, 2007.
T. Haldar, Chatterjee, S., Alam, M. Nirshad, Maity, P., and Bagchi, S., Blue fluorescence of cyano-tryptophan predicts local electrostatics and hydrogen bonding in biomolecules, Journal of Physical Chemistry B, vol. 126, no. 50, pp. 10732-10740, 2022.
S. L. Sonawane and Asha, S. K., Blue, green, and orange-red emission from Polystyrene microbeads for solid-state white-light and multicolor emission, Journal of Physical Chemistry B, vol. 118, no. 31, pp. 9467-9475, 2014.
R. Gokhale and Singh, P., Blue luminescent graphene quantum dots by photochemical stitching of small aromatic molecules: fluorescent nanoprobes in cellular imaging, Particle & Particle Systems Characterization , vol. 31, no. 4, pp. 433-438, 2014.
P. Ganguly, Kulkarni, B. S., and Pal, S., Bond length variations: electron number profiles and transferable atomic sizes, Journal of Molecular Structure, vol. 936, no. 1-3, pp. 1-8, 2009.
P. Dnyane and Gadgil, C., Boolean model for melanogenesis, Physical Biology, vol. 18, no. 2, p. 026004, 2021.
K. Kumar Patra, Liu, Z., Lee, H., Hong, S., Song, H., Abbas, H. Ghulam, Kwon, Y., Ringe, S., and Oh, J., Boosting electrochemical CO2 reduction to methane via tuning oxygen vacancy concentration and surface termination on a copper/ceria catalyst, ACS Catalysis, vol. 12, no. 17, pp. 10973-10983, 2022.
Y. N. Marathe, Arun, T. A. T., Ramesh, C., and Badiger, M. V., Borassus powder-reinforced poly(lactic acid) composites with improved crystallization and mechanical properties, Journal of Applied Polymer Science, vol. 136, no. 18, p. Article No: 47440, 2019.
M. K. Kesharwani, Suresh, M., Das, A., and Ganguly, B., Borazine as a sensor for fluoride ion: a computational and experimental study, Tetrahedron Letters, vol. 52, no. 28, pp. 3636–3639, 2011.
R. Belgamwar, Rankin, A. G. M., Maity, A., Mishra, A. Kumar, Gomez, J. S., Trebosc, J., Vinod, C. P., Lafon, O., and Polshettiwar, V., Boron nitride and oxide supported on dendritic fibrous nanosilica for catalytic oxidative dehydrogenation of propane, ACS Sustainable Chemistry & Engineering, vol. 8, no. 43, pp. 16124-16135, 2020.
V. Chandrakan Wakchaure, Das, T., and Babu, S. Santhosh, Boron-conjugated pyrenes as fluorescence-based molecular probes and security markers, ChemPlusChem, 2019.

Pages