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141.
142.
The traditional Zn/MnO2 battery has attracted great interest due to its low cost, high safety, high output voltage, and environmental friendliness. However, it remains a big challenge to achieve long‐term stability, mainly owing to the poor reversibility of the cathode reaction. Different from previous studies where the cathode redox reaction of MnO2/MnOOH is in solid state with limited reversibility, here a new aqueous rechargeable Zn/MnO2 flow battery is constructed with dissolution–precipitation reactions in both cathodes (Mn2+/MnO2) and anodes (Zn2+/Zn), which allow mixing of anolyte and catholyte into only one electrolyte and remove the requirement for an ion selective membrane for cost reduction. Impressively, this new battery exhibits a high discharge voltage of ≈1.78 V, good rate capability (10C discharge), and excellent cycling stability (1000 cycles without decay) at the areal capacity ranging from 0.5 to 2 mAh cm‐2. More importantly, this battery can be readily enlarged to a bench scale flow cell of 1.2 Ah with good capacity retention of 89.7% at the 500th cycle, displaying great potential for large‐scale energy storage.  相似文献   
143.
144.
Time‐of‐flight secondary‐ion mass spectrometry (TOF‐SIMS), a powerful analytical technique sensitive to all components of perovskite solar cell (PSC) materials, can differentiate between the various organic species within a PSC absorber or a complete device stack. The ability to probe chemical gradients through the depth of a device (both organic and inorganic), with down to 100 nm lateral resolution, can lead to unique insights into the relationships between chemistry in the absorber bulk, at grain boundaries, and at interfaces as well as how they relate to changes in performance and/or stability. In this review, the technique is described; then, from the literature, several examples of how TOF‐SIMS have been used to provide unique insight into PSC absorbers and devices are covered. Finally, the common artifacts that can be introduced if the data are improperly collected, as well as methods to mitigate these artifacts are discussed.  相似文献   
145.
Li metal, which has a high theoretical specific capacity and low redox potential, is considered to the most promising anode material for next‐generation Li ion‐based batteries. However, it also exhibits a disadvantageous solid electrolyte interphase (SEI) layer problem that needs to be resolved. Herein, an advanced separator composed of reduced graphene oxide fiber attached to aramid paper (rGOF‐A) is introduced. When rGOF‐A is applied, F? anions, generated from the decomposition of the LiPF6 electrolyte during the SEI layer formation process form semi‐ionic C? F bonds along the surface of rGOF. As Li+ ions are plated, the “F‐doped” rGO surface induces the formation of LiF, which is known as a component of a chemically stable SEI, therefore it helps the Li metal anode to operate stably at a high current of 20 mA cm?2 with a high capacity of 20 mAh cm?2. The proposed rGOF‐A separator successfully achieves a stable SEI layer that could resolve the interfacial issues of the Li metal anode.  相似文献   
146.
The relatively low capacity and capacity fade of spinel LiMn2O4 (LMO) limit its application as a cathode material for lithium‐ion batteries. Extending the potential window of LMO below 3 V to access double capacity would be fantastic but hard to be realized, as it will lead to fast capacity loss due to the serious Jahn–Teller distortion. Here using experiments combined with extensive ab initio calculations, it is proved that there is a cooperative effect among individual Jahn–Teller distortions of Mn3+O6 octahedrons in LMO, named as cooperative Jahn–Teller distortion (CJTD) in the text, which is the difficulty to access the capacity beyond one lithium intercalation. It is further proposed that the cationic disordering (excess Li at Mn sites and Li/Mn exchange) can intrinsically suppress the CJTD of Mn3+O6 octahedrons. The cationic disordering can break the symmetry of Mn3+ arrangements to disrupt the correlation of distortions arising from individual JT centers and prevent the Mn3+? O bonds distorting along one direction. Interestingly, with the suppressed CJTD, the original octahedral vacancies in spinel LMO are activated and can serve as extra Li‐ion storage sites to access the double capacity with good reversible cycling stability in microsized LMO.  相似文献   
147.
杨斌  孟庆瑶  张凯  段义忠 《植物研究》2020,40(5):686-695
对第三纪孑遗濒危植物矮扁桃(Amygdalus nana)叶绿体全基因组进行结构特征分析,并探究其与近缘物种之间的系统进化关系。利用Illumina HiSeq Xten测序技术获取叶绿体全基因组序列,对其进行组装、注释和特征分析。结果表明:①矮扁桃叶绿体全基因组总长度为158 596 bp,其中LSC长度为86 771 bp,SSC长度为19 037 bp,2个IRs均为26 394 bp,为环状四分体结构。共注释130个基因,包括85个PCGs、37个tRNA和8个rRNA。②对6种植物进行IR边界区扩张和收缩分析,发现在4个边界区的基因类型和基因分布情况存在一定差异,并且亲缘关系越紧密差异程度越小。③在矮扁桃叶绿体全基因组中共预测了71个SSRs位点。④系统发育分析结果显示,在扁桃亚属中,矮扁桃在亲缘关系上与蒙古扁桃更近,而与长柄扁桃和榆叶梅的亲缘关系稍远。本研究对矮扁桃叶绿体全基因组进行了深度剖析,并且涉及大量被子植物的叶绿体全基因组资料,为桃属植物之间的进化关系和植物鉴定提供参考依据。  相似文献   
148.
目的:探讨胰腺癌患者血清癌胚抗原(CEA)、糖类抗原242(CA242)、糖类抗原199(CA199)水平变化,并分析上述指标对胰腺癌的联合诊断价值,为胰腺癌的临床诊断提供参考。方法:选择2014年2月至2018年2月我院收治的186例胰腺癌患者(胰腺癌组)、89例胰腺炎患者(胰腺炎组)作为研究对象,并取同期来我院检查的268例健康人作为对照组。比较三组受试者的血清CEA、CA242、CA199水平变化,对比分析血清CEA、CA242、CA199的单一以及联合诊断的准确度、特异度以及灵敏度,并绘制ROC曲线以分析上述指标的诊断价值。结果:三组受试者血清CEA、CA242、CA199水平差异具有统计学意义(P<0.05)。且胰腺炎组和胰腺癌组的血清CEA、CA242、CA199水平明显高于对照组,胰腺癌组患者的血清CEA、CA242、CA199水平明显高于胰腺炎组,差异均有统计学意义(P<0.05)。ROC曲线结果显示,CEA诊断价值最大,CA199诊断价值最小。CEA是胰腺癌单项肿瘤标志物中敏感度最高的,为85.48%;特异度最高的为CA242(96.72%);三项肿瘤标志物联合诊断的准确度增加至92.27%,敏感度增加至95.16%,特异度相比略有下降。结论:与单一肿瘤标记物诊断胰腺癌相比,CEA、CA242、CA199联合诊断的敏感度和准确度均明显升高,可以明显改善胰腺癌的漏诊率,提高患者的生存率,具有较好的临床应用价值。  相似文献   
149.
目的:通过比较不同胸腔镜手术方式治疗早期非小细胞肺癌根治术术后的相关临床指标,为临床手术方式提供经验。方法:收集我院2017年1月~2019年12月收治的行肺癌根治术的早期非小细胞肺癌病例共100例,分别采用单孔胸腔镜(40例),两孔胸腔镜(32例)及三孔胸腔镜(28例)手术方式,比较三组手术术中及术后的相关指标。结果:单孔胸腔镜组术中出血量、术后引流量明显少于两孔胸腔镜组和三孔胸腔镜组(P0.05),而两孔胸腔镜组明显少于三孔胸腔镜组(P0.05);单孔胸腔镜组术后胸管留置时间和术后住院时间均短于两孔胸腔镜组和三孔胸腔镜组(P0.05),而两孔胸腔镜组明显短于三孔胸腔镜组(P0.05)。三组组内疼痛评分术后24h低于术后12h,术后48h低于术后24h,差异均有统计学意义(P0.05)。三组组间不同时间点疼痛评分比较发现,单孔胸腔镜组疼痛评分低于两孔胸腔镜组和三孔胸腔镜组(P0.05),而两孔胸腔镜组低于三孔胸腔镜组(P0.05)。三组清扫淋巴结数目、淋巴结站数和术后并发症发生率差异均无统计学意义(P0.05)。结论:单孔胸腔镜早期非小细胞肺癌根治术与两孔、三孔胸腔镜手术相比优势明显,且不会显著增加术后并发症,可作为临床首选。  相似文献   
150.
Tian  Chan  Deng  Tao  Zhu  Xiuhuang  Gong  Chen  Zhao  Yangyu  Wei  Yuan  Li  Rong  Xu  Xiufeng  He  Miaonan  Zhang  Zhiwei  Cheng  Jing  BenWillem  Mol  Qiao  Jie 《中国科学:生命科学英文版》2020,63(3):319-328
In China,the medical guidelines recommend performing noninvasive prenatal testing (NIPT) with caution for pregnant women aged 35 years or older.However,the Mother and Child Health Care Law suggests that all primiparous women whose age is older than 35 years undergo prenatal diagnosis.These two inconsistent suggestions/recommendations have made obstetricians confused about whether to offer NIPT to these older pregnant women.To face this issue and find out the solution we performed a retrospective study of 189,809 NIPT samples collected from 28 provincial-leveled administrative units in China.Of 1,564women with high-risk pregnancies who underwent NIPT,459 (29.3%) did not participate in follow-up.The compound sensitivity and specificity of NIPT for trisomies 21,18 and 13 detection was 99.1%(95%CI,98.0%-99.6%) and 99.9%(95%CI,98.8%-99.9%),respectively.In secundiparous women,NIPT showed high sensitivity and specificity similar to that in primiparous women.The observed risk for trisomies 21 and 18 significantly increased when the maternal age was 39 and older.After the publication of the current NIPT policy,the follow-up rate at our center was 97.9%;however,a large number of women are not in maternal and infant care networks nationwide,and that makes the follow-up rate outside our center relatively low.Our study shows that to balance the prevention of major aneuploidies and the limited resources for prenatal diagnosis,the cut-off age of 35for invasive prenatal diagnosis might be unnecessary.Although the NIPT guidelines are well written,how to practice it effectively,especially in less industrialized areas,is worth discussing.  相似文献   
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