Publications by authors named "Amna Bashir"

Significant progress has been achieved in PbS colloidal quantum dot solar cells (CQDSCs) by concentrating on structural engineering, band-alignment engineering, and enhancing the interfacial functionality of colloidal quantum dots (CQDs). Nonetheless, designing a durable and efficient photovoltaic device still represents a considerable obstacle for scientists in this domain. The present work demonstrates that the photovoltaic performance of PbS CQDSCs can be increased by adding 1-5 wt % yttrium into the zinc oxide (YZO) ETL.

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Background: Wound recovery is an important part of treatment to prevent internal organelles from possible exposure to outer pathogens. In recent years, different therapies have been reported to enhance the natural wound healing process with faster and more effective tissue repair.

Method: The hydrothermal method has been endeavored to synthesize eco-friendly and cost-effective polymer (polyethylene glycol (PEG) and chitosan) functionalized cerium oxide nanoparticles (CeO NPs).

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Long coronavirus disease-19 (COVID-19) is a complex, multifactorial condition characterized by persistent symptoms lasting more than 12 weeks following acute severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection. The underlying mechanisms remain incompletely understood, but chronic inflammation, immune dysregulation, autoimmunity, and viral persistence are increasingly being implicated. This study investigated the immunopathological drivers of long COVID-19 and their associations with clinical manifestations and organ damage.

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Background: Neuropathic pain (NP) frequently coexists with major depressive disorder (MDD), sharing common molecular pathways that affect brain function. Targeting these molecular pathways through multi-target herbal remedies, such as the extract from Corydalis rhizoma (CR), may offer new therapeutic strategies; however, the variability in composition and potential toxicity of natural products, as seen with mishandled herbs, presents significant challenges in the U.S.

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In order to enhance the overall efficiency of colloidal quantum dots solar cells, it is crucial to suppress the recombination of charge carriers and minimize energy loss at the interfaces between the transparent electrode, electron transport layer (ETL), and colloidal quantum dots (CQDs) light-absorbing material. In the current study, ZnO/SrTiO (STO), ZnO/WO (TO), and ZnO/ZnSnO (ZTO) bilayers are introduced as an ETL using a spin-coating technique. The ZTO interlayer exhibits a smoother surface with a root-mean-square (RMS) value of ≈ 3.

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The majority of meniscal tears in bucket handles are associated with anterior cruciate ligament (ACL) impairment. Its a rare condition which is rarely encountered when the meniscus has a bucket handle on both sides of the compartment. Here we present the case of a 28-year- old male cricket player with a total ACL rupture, a double Posterior Cruciate ligament (PCL) sign on MRI (Magnetic Resonance Imaging), an uncommon occurrence of a complex bucket handle rupture of the medial meniscus with a double PCL sign.

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The intricate problems concerning energy require innovative solutions. Herein, we propose a smart composite nano system that can be used in a sustainable and dichotomous manner to resolve energy crises. The current study describes a new way to synthesize a pure spinel cobalt oxide (CoO) and boron (B), nitrogen (N), and sulfur (S) tri-doped CoO-reduced graphite oxide (rGO) nanocomposite (CBNS).

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Student mental health concerns can manifest in several forms. Medical students juggling a multitude of trials (i.e.

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As the pandemic made it unsafe for providers and patients to meet in person, the US government implemented key temporary telehealth waivers in March 2020 that expanded Medicare telehealth coverage dramatically. Some of the most significant changes included the removal of location restrictions so that patients and providers could engage in telehealth from their homes, full provider reimbursement for telehealth visits, coverage for more medical specialties and types of practitioners such as occupational and physical therapists, and the allowance of telehealth prescription of controlled substances. The waivers will end when the government removes the federal status of a public health emergency, which is expected to occur in 2023.

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Congenital muscular torticollis is a problem that arises at birth or immediately after birth in which the sternocleidomastoid muscle is shortened on the afflicted side, leading to an ipsilateral rotated of the head and a contralateral rotation of the face and jaw. To determine the effectiveness of physical therapy treatment in infants treated for congenital muscular torticollis, relevant articles published between 2011 and 2020 were located using electronic databases. A total of 9 studies out of 24 potentially relevant articles were reviewed.

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Colloidal quantum dot solar cells (CQDSCs) have achieved remarkable progress recently in terms of mainly surface passivation and composition-matching matrices on CQDs, while improving the overall photoelectric conversion efficiency (PCE) through electron transport layer (ETL) modifications is less explored. We report a low-temperature solution route to synthesize donor (Al/Ga/In) incorporated zinc oxide (AZO/GZO/IZO) ETL films for PbS CQDSCs. Spectroscopic characterization studies indicate that the IZO ETL fabricated with 150 °C annealing can increase the bandgap the most from 3.

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Chemical phosphorus removal (CPR) is being increasingly adopted in wastewater treatment plants (WWTPs) to enhance P elimination to comply with stringent discharge limits. However, strategies to recover P enriched in the produced waste activated sludge (WAS) are not well developed. In this study, we investigated the release of P in WAS from three WWTPs employing Al salt enhanced CPR by alkaline treatment.

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Carbon based perovskite solar cells (PSCs) are fabricated through easily scalable screen printing techniques, using abundant and cheap carbon to replace the hole transport material (HTM) and the gold electrode further reduces costs, and carbon acts as a moisture repellent that helps in maintaining the stability of the underlying perovskite active layer. An inorganic interlayer of spinel cobaltite oxides (CoO) can greatly enhance the carbon based PSC performance by suppressing charge recombination and extracting holes efficiently. The main focus of this research work is to investigate the effectiveness of CoO spinel oxide as the hole transporting interlayer for carbon based perovskite solar cells (PSCs).

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In order to assess the metal pollution status of agricultural lands of Mandi Bahauuddin receiving industrial wastewater, 35 top soil samples were investigated for the determination of selected metal levels, i.e., Fe, Cu, Cd, Cr, Ca, Ni, and Pb by flame atomic absorption spectroscopy under optimum analytical conditions.

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