Electrolyte design holds the greatest opportunity for the development of batteries that are capable of sub-zero temperature operation.To get the most energy storage out of the battery at low temperatures,improvements ...Electrolyte design holds the greatest opportunity for the development of batteries that are capable of sub-zero temperature operation.To get the most energy storage out of the battery at low temperatures,improvements in electrolyte chemistry need to be coupled with optimized electrode materials and tailored electrolyte/electrode interphases.Herein,this review critically outlines electrolytes’limiting factors,including reduced ionic conductivity,large de-solvation energy,sluggish charge transfer,and slow Li-ion transportation across the electrolyte/electrode interphases,which affect the low-temperature performance of Li-metal batteries.Detailed theoretical derivations that explain the explicit influence of temperature on battery performance are presented to deepen understanding.Emerging improvement strategies from the aspects of electrolyte design and electrolyte/electrode interphase engineering are summarized and rigorously compared.Perspectives on future research are proposed to guide the ongoing exploration for better low-temperature Li-metal batteries.展开更多
Anti-cancer therapy often causes premature ovarian insufficiency and infertility as the ovarian follicle reserve is extremely sensitive to chemotherapy drugs,such as cisplatin.Various fertility preservation methods ha...Anti-cancer therapy often causes premature ovarian insufficiency and infertility as the ovarian follicle reserve is extremely sensitive to chemotherapy drugs,such as cisplatin.Various fertility preservation methods have been explored for women,especially prepubertal girls undergoing radiotherapy and chemotherapy due to cancer.In recent years,mesenchymal stem cell-derived exosomes(MSC-exos)have been reported to play an important role in tissue repair and the treatment of various diseases.In the current study,we observed that human umbilical cord-derived MSC-exos(hucMSC-exos)after short-term culture improved follicular survival and development while receiving cisplatin treatment.Moreover,intravenous injection of hucMSC-exos improved ovarian function and ameliorated inflammatory environment within the ovary.The underlying mechanism of hucMSC-exos on fertility preservation was associated with the down-regulation of p53-related apoptosis and their anti-inflammatory function.Based on these findings,we propose that hucMSC-exos may be a potential approach to improve fertility in women diagnosed with cancer.展开更多
基金The work described in this paper was fully supported by a Grant from the City University of Hong Kong(Project No.9610641).
文摘Electrolyte design holds the greatest opportunity for the development of batteries that are capable of sub-zero temperature operation.To get the most energy storage out of the battery at low temperatures,improvements in electrolyte chemistry need to be coupled with optimized electrode materials and tailored electrolyte/electrode interphases.Herein,this review critically outlines electrolytes’limiting factors,including reduced ionic conductivity,large de-solvation energy,sluggish charge transfer,and slow Li-ion transportation across the electrolyte/electrode interphases,which affect the low-temperature performance of Li-metal batteries.Detailed theoretical derivations that explain the explicit influence of temperature on battery performance are presented to deepen understanding.Emerging improvement strategies from the aspects of electrolyte design and electrolyte/electrode interphase engineering are summarized and rigorously compared.Perspectives on future research are proposed to guide the ongoing exploration for better low-temperature Li-metal batteries.
基金supported by the National Key Research and Development Program of China(Grant Nos.2018YFC1003703 and 2018YFC1004203)the National Natural Science Foundation of China(Grant No.31871513).
文摘Anti-cancer therapy often causes premature ovarian insufficiency and infertility as the ovarian follicle reserve is extremely sensitive to chemotherapy drugs,such as cisplatin.Various fertility preservation methods have been explored for women,especially prepubertal girls undergoing radiotherapy and chemotherapy due to cancer.In recent years,mesenchymal stem cell-derived exosomes(MSC-exos)have been reported to play an important role in tissue repair and the treatment of various diseases.In the current study,we observed that human umbilical cord-derived MSC-exos(hucMSC-exos)after short-term culture improved follicular survival and development while receiving cisplatin treatment.Moreover,intravenous injection of hucMSC-exos improved ovarian function and ameliorated inflammatory environment within the ovary.The underlying mechanism of hucMSC-exos on fertility preservation was associated with the down-regulation of p53-related apoptosis and their anti-inflammatory function.Based on these findings,we propose that hucMSC-exos may be a potential approach to improve fertility in women diagnosed with cancer.