| Keyword search (4,163 papers available) | ![]() |
"Li P" Authored Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | Associations between brain and cognitive resilience, tau load and extent in Alzheimer's disease | Mitchell SW; Chan T; Trudel L; Hosseini SA; Macedo AC; Gonçalves MP; Rahmouni N; Hall BJ; Socualaya KMQ; Therriault J; Servaes S; Bezgin G; Zheng Y; Aumont E; Wang YT; Arias JF; Real APB; Jia WL; Hopewell R; Hsiao C; Soucy JP; Vitali P; Pascoal TA; Rosa-Neto P; | 41512332 PERFORM |
| 2 | Alzheimer s Imaging Consortium | Mitchell SW; Chan T; Trudel L; Hosseini SA; Macedo AC; Gonçalves MP; Rahmouni N; Hall BJ; Socualaya KMQ; Therriault J; Servaes S; Bezgin G; Zheng Y; Aumont E; Wang YT; Arias JF; Real APB; Jia WL; Hopewell R; Hsiao C; Soucy JP; Vitali P; Pascoal TA; Rosa-Neto P; | 41433447 PERFORM |
| 3 | Trends in missed paediatric preventive primary care visits during the COVID-19 pandemic using routinely collected electronic medical records in Ontario, Canada (2015-2022) | Bayoumi I; Mcfadden K; Valkanas H; Tu K; Kalia S; Chen T; Christie CD; Rourke J; Rourke L; Greiver M; Leduc D; Li P; | 41290264 CONCORDIA |
| 4 | Investigating the effects of a randomized, double-blinded aerobic, resistance, and cognitive training clinical trial on neurocognitive function in older adults with cardiovascular risk factors: the ACTIONcardioRisk protocol | Bherer L; Vrinceanu T; Dupuy EG; Gayda M; Vincent T; Magnan PO; Mohammadi H; Gauthier C; Gagnon C; Duchesne S; Erickson KI; Gagnon D; Lesage F; Lupien S; Poirier J; Dubé MP; Thorin É; Juneau M; Breton J; Belleville S; Ferland G; Gaudreau-Majeau F; Blanchette CA; Vitali P; Nigam A; | 40625372 PSYCHOLOGY |
| 5 | Adaptive finite-time synchronized control of multi-robotic fiber placement system with model uncertainties and disturbances | Zhang R; Wang Y; Xie W; Li P; Tan H; Jiang Y; | 40461302 ENCS |
| 6 | Dynamic and Reprocessable Fluorinated Poly(hindered urea) Network Materials Containing Ionic Liquids to Enhance Triboelectric Performance | Nellepalli P; Kim MP; Park J; Noh SM; Ye Z; Jung HW; Ko H; Oh JK; | 35385641 CHEMBIOCHEM |
| 7 | Dynamic Covalent Polyurethane Network Materials: Synthesis and Self-healability | Nellepalli P; Patel T; Oh JK; | 34418209 CHEMBIOCHEM |
| 8 | Macromolecularly Engineered Thermoreversible Heterogeneous Self-Healable Networks Encapsulating Reactive Multidentate Block Copolymer-Stabilized Carbon Nanotubes | Zhang G; Patel T; Nellepalli P; Bhagat S; Hase H; Jazani AM; Salzmann I; Ye Z; Oh JK; | 33988899 CHEMBIOCHEM |
| 9 | Self-Healable Reprocessable Triboelectric Nanogenerators Fabricated with Vitrimeric Poly(hindered Urea) Networks. | Patel T, Kim MP, Park J, Lee TH, Nellepalli P, Noh SM, Jung HW, Ko H, Oh JK | 32840992 CHEMBIOCHEM |
| 10 | Hypertension Canada's 2020 Comprehensive Guidelines for the Prevention, Diagnosis, Risk Assessment, and Treatment of Hypertension in Adults and Children. | Rabi DM, McBrien KA, Sapir-Pichhadze R, Nakhla M, Ahmed SB, Dumanski SM, Butalia S, Leung AA, Harris KC, Cloutier L, Zarnke KB, Ruzicka M, Hiremath S, Feldman RD, Tobe SW, Campbell TS, Bacon SL, Nerenberg KA, Dresser GK, Fournier A, Burgess E, Lindsay P, Rabkin SW, Prebtani APH, Grover S, Honos G, Alfonsi JE, Arcand J, Audibert F, Benoit G, Bittman J, Bolli P, Côté AM, Dionne J, Don-Wauchope A, Edwards C, Firoz T, Gabor JY, Gilbert RE, Grégoire JC, Gryn SE, Gupta M, Hannah-Shmouni F, Hegele RA, Herman RJ, H | 32389335 HKAP |
| 11 | Hypertension Canada's 2016 Canadian Hypertension Education Program Guidelines for Blood Pressure Measurement, Diagnosis, Assessment of Risk, Prevention, and Treatment of Hypertension. | Leung AA, Nerenberg K, Daskalopoulou SS, McBrien K, Zarnke KB, Dasgupta K, Cloutier L, Gelfer M, Lamarre-Cliche M, Milot A, Bolli P, Tremblay G, McLean D, Tobe SW, Ruzicka M, Burns KD, Vallée M, Prasad GV, Lebel M, Feldman RD, Selby P, Pipe A, Schiffrin EL, McFarlane PA, Oh P, Hegele RA, Khara M, Wilson TW, Penner SB, Burgess E, Herman RJ, Bacon SL, Rabkin SW, Gilbert RE, Campbell TS, Grover S, Honos G, Lindsay P, Hill MD, Coutts SB, Gubitz G, Campbell NR, Moe GW, Howlett JG, Boulanger JM, Prebtani A, Laroc | 27118291 HKAP |
| 12 | Hypertension Canada's 2017 Guidelines for Diagnosis, Risk Assessment, Prevention, and Treatment of Hypertension in Adults. | Leung AA, Daskalopoulou SS, Dasgupta K, McBrien K, Butalia S, Zarnke KB, Nerenberg K, Harris KC, Nakhla M, Cloutier L, Gelfer M, Lamarre-Cliche M, Milot A, Bolli P, Tremblay G, McLean D, Tran KC, Tobe SW, Ruzicka M, Burns KD, Vallée M, Prasad GVR, Gryn SE, Feldman RD, Selby P, Pipe A, Schiffrin EL, McFarlane PA, Oh P, Hegele RA, Khara M, Wilson TW, Penner SB, Burgess E, Sivapalan P, Herman RJ, Bacon SL, Rabkin SW, Gilbert RE, Campbell TS, Grover S, Honos G, Lindsay P, Hill MD, Coutts SB, Gubitz G, Campbell | 28449828 HKAP |
| 13 | Hypertension Canada's 2018 Guidelines for Diagnosis, Risk Assessment, Prevention, and Treatment of Hypertension in Adults and Children. | Nerenberg KA, Zarnke KB, Leung AA, Dasgupta K, Butalia S, McBrien K, Harris KC, Nakhla M, Cloutier L, Gelfer M, Lamarre-Cliche M, Milot A, Bolli P, Tremblay G, McLean D, Padwal RS, Tran KC, Grover S, Rabkin SW, Moe GW, Howlett JG, Lindsay P, Hill MD, Sharma M, Field T, Wein TH, Shoamanesh A, Dresser GK, Hamet P, Herman RJ, Burgess E, Gryn SE, Grégoire JC, Lewanczuk R, Poirier L, Campbell TS, Feldman RD, Lavoie KL, Tsuyuki RT, Honos G, Prebtani APH, Kline G, Schiffrin EL, Don-Wauchope A, Tobe SW, Gilbert RE, | 29731013 NA |
| Title: | Dynamic and Reprocessable Fluorinated Poly(hindered urea) Network Materials Containing Ionic Liquids to Enhance Triboelectric Performance | ||||
| Authors: | Nellepalli P, Kim MP, Park J, Noh SM, Ye Z, Jung HW, Ko H, Oh JK | ||||
| Link: | pubmed.ncbi.nlm.nih.gov/35385641/ | ||||
| DOI: | 10.1021/acsami.2c01963 | ||||
| Publication: | ACS applied materials & interfaces | ||||
| Keywords: | dynamic/reversible chemistries; fluorinated polymer network; ionic liquids; poly(hindered urea); reprocessability; self-healability; triboelectric nanogenerator; | ||||
| PMID: | 35385641 | Category: | Date Added: | 2022-04-07 | |
| Dept Affiliation: |
CHEMBIOCHEM
1 Department of Chemistry and Biochemistry, Concordia University, Montreal, Quebec H4B 1R6, Canada. 2 School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea. 3 Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Republic of Korea. 4 Research Center for Advanced Specialty Chemicals, Korea Research Institute of Chemical Technology (KRICT), Ulsan 44412, Republic of Korea. 5 Department of Chemical and Materials Engineering, Concordia University, Montreal, Quebec H4B 1R6, Canada. |
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Description: |
Triboelectric nanogenerators (TENGs), a newly developed energy harvesting device that converts surrounding environmental mechanical stimuli into electricity, have been significantly explored as an ideal long-term power source for electrical devices. Despite recent advances, the development of advanced TENG devices with sufficient outputs to sustainably power electronic devices and rapid self-healability under mild conditions to improve their lifetime and function is highly demanded. Here, we report a robust self-healable and reprocessable TENG fabricated with a covalent adaptive network based on mechanically strong fluorinated poly(hindered urea) (F-PHU) integrated with ionic liquid as an efficient dielectric material to improve its triboelectric efficiency and self-healing capability simultaneously. The synthesis and integration of a well-defined reactive copolymer having both pendant fluorinated and t-butylamino bulky groups are the key to fabricate robust F-PHU networks containing fluorinated dangling chains that can interact with ionic liquids to induce ionic polarization, which raises the dielectric constant and thus increases triboelectric performance. They also are cross-linked with dynamic bulky urea linkages for rapid self-healability and high reprocessability through their reversible exchange reactions at moderate temperatures. The developed ionic F-PHU materials exhibit a high TENG output performance (power density of 173.0 mW/m<sup>2</sup>) as well as high TENG output recovery upon repairing their surface damages. This work demonstrates that such a synergistic design of triboelectric ionic F-PHU materials could have great potential for applications requiring high-performance and long-lasting energy harvesting. |



