Publications by authors named "Jiang Yu Li"

Article Synopsis
  • Lithium-sulfur (Li-S) batteries show great potential for energy storage but face challenges due to the shuttling effect of polysulfides, which leads to active material loss.
  • Researchers are exploring the impact of surface engineering in covalent organic polymers (COPs) to enhance the performance of Li-S battery cathodes.
  • Improved pore surface polarity and nano-confinement effects in COPs have resulted in significant performance gains, leading to high Coulombic efficiency and minimal capacity decay over numerous cycles, offering insights for future battery material design.
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Introduction: To compare the perioperative outcomes of robotic partial nephrectomy (RPN) vs. laparoscopic partial nephrectomy (LPN) for complex renal tumors with a RENAL nephrometry score ≥7.

Methods: We searched PubMed, EMBASE and the Cochrane Central Register for studies from 2000 to 2020 to evaluate the perioperative outcomes of RPN and LPN in patients with a RENAL nephrometry score ≥7.

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The practical application of Na-superionic conductor structured materials is hindered by limited energy density and structure damage upon activating the third Na. We propose a bimetal substitution strategy with cheaper Fe and Ni elements for costive vanadium in the polyanion to improve both ionic and electronic conductivities, and a single two-phase reaction during Na intercalation/deintercalation and much reduced Na diffusion barrier are uncovered by ex-situ X-ray diffraction and density functional theory calculations. Thus, the obtained cathode, NaFeVNi(PO), shows excellent electrochemical performances including high specific capacity (102.

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The hexagonal rare earth ferrites -RFeO(R = rare earth element) have been recognized as promising candidates for a room-temperature multiferroic system, and the primary issue for these materials is how to get a stable hexagonal structure since the centrosymmetric orthorhombic structure is generally stable for most RFeO at room-temperature, while the hexagonal phase is only stable under some strict conditions. In the present work, -LuInFeO ( = 0-1) thin films were prepared on a Nb-SrTiO (111) single-crystal substrate by a pulsed laser deposition (PLD) process, and the multiferroic characterization was performed at room temperature. With the combined effects of chemical pressure and epitaxial strain, the stable hexagonal structure was achieved in a wide composition range ( = 0.

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Background: As the survival rates of patients with renal cell carcinoma (RCC) continue to increase, noncancer causes of death cannot be ignored. The cause-specific mortality in patients with RCC is not well understood.

Objective: Our study aimed to explore the mortality patterns of contemporary RCC survivors.

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Tetrastigma Hemsleyanum Diels & Gilg (TDG) has attracted growing attention in China; however, there were few studies on its bioactive components. Herein, the characteristic chemical components and dual antioxidant and neuraminidase inhibitory activities of fifteen batches of TDG from different places of origin and their relevance were investigated. The HPLC fingerprint was first established and the marker components were identified by using UPLC-Q-TOF-MS/MS.

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Background: To compare the postoperative continence and clinical outcomes of Retzius-sparing robot-assisted laparoscopic radical prostatectomy (RS-RALP) with non-RS RALP for patients with prostate cancer.

Methods: We searched PUBMED, EMBASE and the Cochrane Central Register from 1999 to 2019 for studies comparing RS-RALP to non-RS RALP for the treatment of prostate cancer. We used RevMan 5.

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Article Synopsis
  • Lithium-sulfur (Li-S) batteries are attracting attention due to their high theoretical capacity and energy density, but polysulfide shuttling negatively impacts their performance.
  • A new two-dimensional covalent organic framework (COF) has been developed to load sulfur efficiently (88.4 wt%), significantly enhancing Li-S battery performance with almost complete capacity release and high Coulombic efficiency (98.0%).
  • Structural analysis suggests that the COF's high conjugation and appropriate spacing contribute to its effectiveness, offering insights for future designs to mitigate polysulfide shuttling in electrochemical energy storage.
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The piezoresistive effect has shown a remarkable potential for mechanical sensor applications and been sought for its excellent performance. A great attention was paid to the giant piezoresistive effect and sensitivity delivered by silicon-based nanostructures. However, low thermal stability and complicated fabrication process hinder their practical applications.

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Background: To compare the perioperative outcomes and safety of transperitoneal laparoscopic adrenalectomy with those of retroperitoneal laparoscopic adrenalectomy for patients with pheochromocytoma.

Methods: We searched PubMed, EMBASE and the Cochrane Central Register for studies from 1999 to 2019 to assess the perioperative outcomes and safety of transperitoneal laparoscopic adrenalectomy and the retroperitoneal approach for laparoscopic adrenalectomy in patients with pheochromocytoma. After data extraction and quality assessments, we used RevMan 5.

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Background: The aim of this study was to compare the oncological outcomes and clinical efficacy of laparoscopic pancreaticoduodenectomy (LPD) and open pancreaticoduodenectomy (OPD) in patients with pancreatic ductal adenocarcinoma (PDAC).

Methods: We systematically searched PubMed, EMBASE, Web of Science, ClinicalTrials.gov and the Cochrane Central Register for studies published between May 1998 and May 2018.

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Article Synopsis
  • The study examined the effectiveness of partial nephrectomy (PN) compared to radical nephrectomy (RN) for treating T1b renal cell carcinoma (RCC) by analyzing data from 16 studies with over 33,000 patients.
  • Results showed that while overall survival and recurrence-free survival rates were similar for both procedures, RN had better cancer-specific survival rates, whereas PN was more effective at preserving renal function.
  • The overall evidence quality was moderate, indicating that PN offers comparable outcomes for survival but may lead to worse cancer-specific survival despite better kidney function preservation.
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Background: To compare the clinical efficiency and safety of transurethral resection of the prostate (TURP) and prostatic artery embolization (PAE) for the treatment of Benign prostatic hyperplasia (BPH).

Methods: We searched PUBMED, EMBASE and the Cochrane Central Register for studies from May 1998 to May 2018 for studies comparing the efficiency and safety of TURP with PAE. Four studies met the inclusion criteria for our meta-analysis.

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Single-phase materials that combine electric polarization and magnetization are promising for applications in multifunctional sensors, information storage, spintronic devices, etc. Following the idea of a percolating network of magnetic ions (e.g.

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In the past decades, mesocrystal, a kind of nanocrystals with specific crystallographic orientation, has drawn a lot of attention due to its intriguing functionalities. While the research community keeps searching for new mesocrystal systems, it is equally crucial to develop new approaches to tune the properties of mesocrystals. In this work, a self-organized two-dimensional mesocrystal composed of highly oriented CoFe2O4 (CFO) nano-crystals with assistance of different perovskite matrices is studied as a model system.

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In this Letter, we discuss the dramatically enhanced electrostriction and dielectric constant in an all-organic composite consisting of polyvinylidene fluoride trifluoroethylene [P(VDF-TrFE)] copolymer matrix and copper-phthalocyanine (CuPc) particles, which could not be explained by traditional composite theory. Using a Landau-type potential energy combined with energy minimization, we demonstrate that the dramatic property enhancement is due to the exchange coupling between the dielectrically hard P(VDF-TrFE) and dielectrically soft CuPc, which becomes dominant when the heterogeneity size of the composite is comparable to the exchange length. The exchange coupling is a very effective mechanism for the enhancement of functional properties in ferroelectric and dielectric systems, and its variation with various material parameters is demonstrated and discussed.

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